Hrvoje Petek – Curriculum Vitae Contact Information: Main ... · • American Physical Society...

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Sept. 10, 2019 1 Hrvoje Petek – Curriculum Vitae Contact Information: Department of Physics and Astronomy University of Pittsburgh Pittsburgh, PA 15260 Phone: (412) 478-3933 e-mail: [email protected] Skype: hrvojeat pitt; 412-567-1070 http://ultrafast.phyast.pitt.edu/index.html Main Research Interests: Surface femtochemistry and photocatalysis Ultrafast microscopy of coherent excitations in solids Ultrafast plasmonics in metallic nanostructures Nonequilibrium electronic phenomena in solids Electronic structure of molecule/solid interfaces Molecular machines Education: 1980-1985 Ph.D. in Chemistry University of California, Berkeley Advisor: Prof. C. Bradley Moore 1976-1980 B.S. in Chemistry Massachusetts Institute of Technology Appointments: The University of Pittsburgh Feb. 2014 - present R. K. Mellon Chair in Physics and Astronomy Sept. 2017 - present Associate Director, NSF PIRE:HYBRID Project Sept. 2002 - present Professor of Chemistry, University of Pittsburgh Feb. 2005 - 2012 Co-Director, Petersen Inst. for NanoScience and Eng. April 2000 - Jan. 2014 Professor of Physics, University of Pittsburgh Advisory April 2017 Senior Scientific Advisor to the Director General of the Institute for Molecular Science, Japan April 2015 - March 2019 Member, National Research and Development Agency Committee for NIMS, Japan Hitachi Advanced Research Laboratory Feb. 1993 - March 2000 Senior Research Scientist and Group Leader

Transcript of Hrvoje Petek – Curriculum Vitae Contact Information: Main ... · • American Physical Society...

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Hrvoje Petek – Curriculum Vitae

Contact Information: Department of Physics and Astronomy University of Pittsburgh Pittsburgh, PA 15260 Phone: (412) 478-3933 e-mail: [email protected] Skype: hrvojeat pitt; 412-567-1070 http://ultrafast.phyast.pitt.edu/index.html Main Research Interests:

• Surface femtochemistry and photocatalysis • Ultrafast microscopy of coherent excitations in solids • Ultrafast plasmonics in metallic nanostructures • Nonequilibrium electronic phenomena in solids • Electronic structure of molecule/solid interfaces • Molecular machines

Education: 1980-1985 Ph.D. in Chemistry University of California, Berkeley Advisor: Prof. C. Bradley Moore 1976-1980 B.S. in Chemistry Massachusetts Institute of Technology

Appointments: The University of Pittsburgh

Feb. 2014 - present R. K. Mellon Chair in Physics and Astronomy Sept. 2017 - present Associate Director, NSF PIRE:HYBRID Project Sept. 2002 - present Professor of Chemistry, University of Pittsburgh Feb. 2005 - 2012 Co-Director, Petersen Inst. for NanoScience and Eng. April 2000 - Jan. 2014 Professor of Physics, University of Pittsburgh

Advisory April 2017 Senior Scientific Advisor to the Director General of the

Institute for Molecular Science, Japan April 2015 - March 2019 Member, National Research and Development Agency

Committee for NIMS, Japan

Hitachi Advanced Research Laboratory Feb. 1993 - March 2000 Senior Research Scientist and Group Leader

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Institute for Molecular Science Dec. 1987 - Jan. 1993 Research Associate, Institute for Molecular Science Aug. 1985 - Nov. 1987 Postdoctoral Fellow, Advisor: Prof. Keitaro Yoshihara

Honorary and Visiting Positions: 2019-2021 Luo Jia Visiting Chair Professor, Wuhan University, China 2016 Super Global University Distinguished Professor, Keio

University, Japan 2015 Chinese Academy of Sciences President’s International

Fellowship, USTC, Hefei, China 2012 - 2013 Senior International Visiting Professor of the Chinese Academy of Sciences, USTC, Hefei, China 2007 - 2008 Ikerbasque Research Professor, DIPC Spain 2005 - 2007 Visiting Professor, Institute for Molecular Science, Japan 2004 - 2005 Visiting Professor, Nat. Inst. for Materials Science, Japan 2002 - 2005 Eminent Visiting Professor, Institute of Physical and Chemical Research, RIKEN, Japan 2001 Visiting Professor, Hokkaido University, Japan

Awards and Honors:

• Ahmed Zewail Award in Ultrafast Science and Technology of the American Chemical Society, 2019

• American Association for the Advancement of Science Fellow, 2016 • Morino Award, Kyoto Japan, 2014 • Chancellor’s Distinguished Research Award, University of Pittsburgh, 2005 • American Physical Society Fellow, 2003 • Alexander von Humboldt Research Award, 2000 • NEDO Joint International Research Grant Awardee, 1996 - 1999, 2003 - 2006 • Yamada Science Foundation Postdoctoral Fellow, 1985 • National Science Foundation Postdoctoral Fellow, 1985 - 1987 • National Science Foundation Predoctoral Fellow, 1980 - 1984

Funding history 2000 - present: 1) NSF DMR-0116034 “Development of an Ultrafast Time-Resolved Microscope for

Imaging of Charge Carrier Dynamics in Complex Materials,” (08/01 - 07/04; $412,832)

2) Department of Defense, DAAD 19-01-1-0619, “Enzyme, Antibody, and Photocatalytically Active Nanoscale Scavengers, and Sensors for CW and Biological agents,” (06/01/01/ - 09/31/06; $564,705).

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3) NSF CHE-0209706, “The Role of Substrate Band Structure in Photochemistry on Metal Surfaces,” (08/02 – 07/05; $470,000).

4) New Energy Development Organization of Japan Molecular Wire Project, “Mapping Electronic Conduction in Molecules to Establish a Basis for Design of Molecular Electronic Devices,” (08/08/03 – 03/31/06; $138,882)

5) DOE DE-FG02-03ER15434, “Optical Manipulation of Ultrafast Electron and Nuclear Motion on Metal Surfaces,” (08/03 – 10/06; $447,000).

6) NSF CHE-0439702, “The Role of Substrate Band Structure in Photochemistry on Metal Surfaces” (07/04; $9,700).

7) Japan Science and Technology Agency, “Femtosecond Imaging of Surface Plasmon Dynamics in Nano-optics. Joint Research Agreement between University of Pittsburgh and Japan Science and Technology Agency,” (10/01/05 – 03/31/08; $288,588)

8) PRF 44158-ACS - “The Structure and Dynamics of Wet Electrons on Metal Oxide Surfaces,” (01/01/06 - 08/31/08; $80,000).

9) ARO W911NF-07-1-0239, “Quantum Information Processing with Ferroelectrically Coupled Quantum Dots,” (05/01/07 – 04/30/09; $51,183)

10) NSF ECS-0403865 – NIRT “Plasmonic Nanostructured Devices for Chemical and Biological Sensing,” (08/01/04-07/31/09; $261,014).

11) NSF CHE-0507147 - NIRT “Full Spatio-Temporal Coherent Control on Nanoscale,” (08/01/05 – 07/31/09; $266,716)

12) ARO W911NF-07-1-0052 - “Wet-electron Enhanced Surface Dissociative Electron Attachment Chemistry of Halocarbons,” (12/15/2006 – 12/14/2010; $276,795).

13) NSF CHE-0650756 “The electronic structure and dynamics of solvated electrons at the solid-vacuum interface,” (08/01/07 – 07/31/10; $462,000)

14) W. M. Keck Foundation Grant – “Femtosecond time-resolved microscopy of single molecule machines,” (01/01/08 – 06/30/13; $1,832,208)

15) NSF CHE-0911456 “The electronic structure and dynamics of clean and adsorbate modified graphene,” (07/01/2009 – 06/30/2013; $495,000)

16) DOE DE-FG02-09ER16056 “Studies of surface adsorbate electronic structure and femtochemistry at the fundamental length and time scales,” (07/01/2009 – 06/30/2012; $795,000)

17) DOE DE-FG02-09ER16056 “Studies of surface adsorbate electronic structure and femtochemistry at the fundamental length and time scales,” (07/01/2009 – 06/30/2012; supplemental budget $386,000)

18) University of Pittsburgh “Cutting-edge Infrastructure for Ultrafast Surface Spectroscopy and Microscopy,” (07/01/2010; $3,980,000)

19) NSF CHE-1213189 “Titanium Dioxide Photocatalysis: Interactions of band edge carriers with molecules by ultrafast photoemission spectroscopy and theory,” (06/01/2012-05/30/2016; $450,000)

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20) DOE DE-FG02-09ER16056 “Studies of surface adsorbate electronic structure and femtochemistry at the fundamental length and time scales,” (07/01/2012 – 06/30/2015; $795,000)

21) NSF DMR-1311845 “Materials World Network, SusChEM: Collaborative: Electron-lattice dynamics at an atomically controlled buried interface” (09/15/2013-08/31/2016; $405,282)

22) NSF CHE-1414466 “Center for Chemistry at the Space-time Limit” (08/01/2014-07/31/2019; $20,000,000; University of California, Irvine lead)

23) DOE DE-SC0002313 “Studies of surface adsorbate electronic structure and femtochemistry at the fundamental length and time scales,” (08/15/2015 – 08/14/2019; $789,000)

24) NSF CHE-1565842 “TiO2 Photocatalysis: The coupling of electrons, plasmons, polarons, and molecules by ultrafast photoemission spectroscopy and theory,” (09/15/2016-08/14/20; $714,439).

25) Natural National Science Foundation of China Keystone Project “Ultrafast Dynamics on TiO2 Surfaces,” (01/01/2017-12/31/2021; 3,000,000 yuan; Jin Zhao and H. Petek PIs)

26) NSF OISE-1743717 “PIRE: Hybrid Materials for Quantum Science and Engineering (HYBRID),” (09/01/17-08/31/22; $4,750,000); S. Frolov PI, H. Petek co-PI

Past and Current Students and Collaborators: High School: Orfina Hu, Steven Liu. Undergraduate Students: Jason Clagg, Leah Peker (Sanielevici Awardee) Graduate Students: Bin Li (CFEL-DESY), Vahit Sametoglu (University of British Columbia), Anca Monia Constantinescu (National Magnet Laboratory), Amlan Basak (Intel), Shengmin Zhang (BNY Mellon), Cong Wang (AIG), Adam Argondizzo (II-VI Corp.), Yanan Dai (Columbia Univ.), Karan Kapoor (Pitt), Zhikang Zhang (Pitt), Namitha James (Pitt), Andi Li (Pitt), Atreyie Ghosh (Pitt), Jingchen Zhang (Pitt), Zehua Wang (Pitt). Visiting Graduate Students: Ken-ichi Inoue (Kyoto University), Weibin Chu (USTC), Guolei Xiang (Tsinghua University), Qiang Zou (Institute of Physics, Chinese Academy of Sciences), Jindong Ren (Institute of Physics, Chinese Academy of Sciences), Shuyang Yang (USTC), Yanan Wang (USTC). Postdoctoral Fellows: Ken Onda (Tokyo Institute of Technology), Niko Pontius (BESSY II), Atsushi Kubo (University of Tsukuba), Jin Zhao (USTC), Min Feng (Wuhan University), Chungwei Lin (Mitsubishi USA Co.), Tian Huang (Corning Inc.), Leiming Wang (Konica-Minolta), Xuefeng Cui (USTC), John Willits (Pitt), Maciej Dabrowski (Exeter Univ.), Benoy Anand (India), Jindong Ren (Univ. Münster), Shijing Tan (USTC), Marcel Reutzel (Pitt), Heeseon Lim (Pitt), Chao Zhang (Pitt). Visiting Scientists and Faculty: Uwe Bovensiepen (Free-University, Berlin), Muneaki Hase (University of Tsukuba), Robin Huang (National Tsing Hua University), Kunie

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Ishioka (National Institute for Materials Science), Keiko Kato (NTT Laboratory), Atsushi Kubo (Tsukuba University), Yongsup Park (Kyung Hee University, Korea), Ken-ichi Shudou (Yokohama National University), Julia Stähler (Fritz-Haber Institute), Akinori Tanaka (Kobe University), Aimo Winkelmann (MPI-Halle). Adjunct Faculty: Jin Zhao (USTC), Min Feng (Wuhan University), Xuefeng Cui (USTC), Kunie Ishioka (National Institute for Materials Science), Shijing Tan (USTC). Editorships, Conference Organization, Service: 2006- present Editor-in-Chief, Progress in Surface Science 2020 Co-Organizer (with Prof. Maki Kawai and Prof. Zhenchao Dong)

Pacifichem Symposium on “Discovery and Innovations in Surface Science,” Honolulu, HI.

2019-2021 European Science Foundation College of Expert Reviewers 2019 Co-Organizer (with Prof. Jin Zhao) 11th Symposium on Ultrafast

Surface Dynamics, Qiandao Lake, China 2019 Organizing Committee ALC ’19, Oct. 20, 2019 Kyoto, Japan. 2018 Co-Chair, Telluride conference on “Molecular Videography,”

Telluride CO, Sept. 17 (2018) 2018 Co-Organizer (with Prof. Uwe Bovensiepen) Workshop on "Light

field induced dynamics in low dimensional systems" Duisburg University; Duisburg, Germany, April 25-27 (2018)

2017 International Program Committee of ISSS-8, Tsukuba, Japan 2013 - present Editorial Advisory Board Member of Chemical Physics Letters 2017 5th Ito International Research Center (IIRC) Conference, Tokyo

Univ. in Honor or Prof. Maki Kawai, Intern. Advisory Committee 2014 - 2015 Chinese Academy of Sciences Program Review Panelist 2016 APS March Meeting Focus Session on “Plasmonics and Beyond”

organizer (with Teri Odom and Javier Garcia de Abajo) 2015 Pacifichem 2015: Symposium on: “Fundamental Science of

Photon and Electron Induced Surface Processes” organizer (with Jin Zhao and Yoshiyasu Matsumoto)

2015 NRC Research Associateship Program review panel 2014, 2016 Workshop on “Ultrafast Dynamics at the Nanoscale” organizer;

Okinawa Institute for Science and Technology, Onna, Japan (with Keshav Dani and Junichiro Kono)

2013, 2015 Femtosecond Electron Imaging and Spectroscopy; Scientific Advisory Committee.

2013 246th ACS National Meeting; Symposium on Chemistry at the Space-Time Limit (organizer with Ara Apkarian)

2013, 2015 Symposium on Ultrafast Surface Dynamics VIII, Estes Park, Colorado, Lake Biwa, Japan (International Advisory Committee)

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2011 Organizer, Symposium on the “Frontiers of Photocatalysis”, University of Science and Technology, Hefei, China

2011 - 2012 Program committee, CLEO/QELS 2010 Symposium on Ultrafast Surface Dynamics VII organizer, Brioni,

Croatia (with Branko Gumhalter) 2009 APS March Meeting Focus Session on “Structure and Dynamics

of Interfacial Water” organizer (with Ken Jordan) 2008 Symposium on Ultrafast Surface Dynamics VI, Kloster Banz,

Germany (International Steering Committee) 2007 - 2013 Program Committee, ATTO 2009. 2011, 2013 2008 - 2010 European Quantum Electronics Conference 2006 - 2008 DCP Nominating committee member/chair 2006 Thematic Issue Editor (with John T. Yates), “Photophysics and

Photochemistry on Surfaces”, Chemical Reviews 2006 - 2010 International Conference on Ultrafast Phenomena (Program

Committee) 2000 - 2006 Editorial Board Member, Progress in Surface Science 2006 Symposium on Ultrafast Surface Dynamics V, Abashiri, Japan

(International Steering Committee) 2003 Symposium on Ultrafast Surface Dynamics IV, Telluride, CO

(organizer with Xiaoyang Zhu) 2001 Organizer: Symposium on Electron Dynamics at Interfaces OSA

Annual Meeting, Long Beach, CA 2000 Special Issue Editor, (with T. F. Heinz) on “Electron Dynamics in

Metals", Chemical Physics 1999 - 2001 Associate Editor: Review of Laser Engineering 1999 Organizer: Symposium Photon and Electron Induced Surface

Processes, Hayama, Japan 1989 Organizer: U.S.-Japan Workshop for Young Investigators in

Molecular Science, Okazaki, Japan

Advisory Panels: 2018 Review panel member: German Research Foundation; Priority

Program on “Quantum Dynamics in Tailored Intense Fields.” 2016 Visiting Committee, Lebanese American University 2016 2016 DOE BES Chemical Kinetics & Dynamics at Interfaces

Program Review Panel 2014 Ahmed Zewail Prize in Molecular Sciences Selection Committee 2014 - present Pittsburgh Quantum Institute Advisory Committee Member 2010-13 NSF-UC Irvine Center for Chemical Innovation on Chemistry at

the Space-Time Limit (CaSTL); Chair, Advisory Board

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2009 Environmental Molecular Sciences Laboratory, Molecular Science Computing 2010 Greenbook Panel

2009-2010 Stanford SSRL X-RAY/VUV laser, proposal review panel 2009-2011 Center for Functional Nanomaterials, Brookhaven National

Laboratory, proposal review panel 2007 University of Wisconsin VUV/Soft X-ray Free Electron Laser

User Facility Scientific Panel 2007 DOE Basic Research Needs for Electrical Energy Storage 2006 Visiting Committee, Surface Science Laboratory, RIKEN 2005 DOE Workshop on the Future of Solar Energy Conversion 2004-2014 NSF Instrumentation for Materials Research/MRI 2002 DOE Workshop on the Future of Catalysis

Languages:

Croatian (native), English, Japanese, Spanish (reading)

Professional Memberships: • American Chemical Society, Fellow, 1977 - present • American Physical Society, 1980 - present • American Association for the Advancement of Science, Fellow, 2005 – present • American Vacuum Society 2018-present

Patents:

Author of 19 US, Japanese, and European patents and patent disclosures on optoelectronics, lasers, etc. Recent disclosures: No. 60/969,353 Ultrafast Microscopy of Surface Electromagnetic Fields No. 61/490,834 A Hierarchical Single Molecule Switch Based on Stimulated Internal Cluster Motion within a Hollow Molecular Cage

Invited and Plenary lectures at national and international conferences and colloquia (05/2005 - present):

1. International Conference on Internal Interfaces, ICII-2020; St. Goar Germany May, 3-7, 2020.

2. Colloquium, Humboldt University CRC 951; Berlin, Germany, April 23, 2020 3. German Physical Society Spring Meeting Symposium on "Electron-driven

processes: atomic-scale insights from theory and experiment;" Dresden, March 15, 2020.

4. Gordon Conference on Plasmonically Powered Processes; Hong Kong University, Hong Kong, July 28-Aug. 2, 2019.

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5. Solid State Science & Research; Zagreb, Croatia, June 27-29, 2019. 6. Telluride Workshop on Nanophotonics Out-of-Equilibrium, Telluride CO; July 16-

20/2019 7. 11th Conference on Ultrafast Surface Dynamics, Qiandao Lake, China; June. 11,

2019 8. Femtosecond Electron Imaging and Spectroscopy 4; Lincoln NB, May 13-15, 2019. 9. Ultrafast Bandgap Photonics; Georgetown University, April 16 (2019). 10. Colloquium, University of Florida; April 8, 2019. 11. American Chemical Society Award (Zewail) Session; Orlando, FL, April 2, 2019. 12. Luo Jia Lecture, Wuhan University, Wuhan, China, March 6, 2019. 13. Colloquium, Wuhan Univ., Department of Physics, Wuhan, China, March 5, 2019. 14. DIET 16 Conference; Insel, Germany, Oct. 8-12, 2018. 15. Telluride Conference on “Molecular Videography,” Telluride CO, Sept. 17 (2018). 16. Near Field Optics, NFO-15; Troyes, France, Aug. 26-31 (2018). 17. CaSTL workshop, Lake Arrowhead, CA June 6 2018. 18. International Symposium on Spectroscopy and Dynamics at Surfaces and

Interfaces, Kyoto University; Kyoto, Japan May 24, 2018. 19. Colloquium Fritz-Haber Institute; Berlin, Germany, May 7, 2018. 20. Colloquium Göttingen University; Göttingen, Germany, May 4, 2018. 21. Colloquium University of Konstanz; Konstanz, Germany, May 3, 2018. 22. Colloquium Duisburg-Essen University; Duisburg, Germany, May 2, 2018. 23. Workshop on "Light field induced dynamics in low dimensional systems"

Duisburg-Essen University; Duisburg, Germany, April 6, 2018. 24. Workshop on "Light field induced dynamics in low dimensional systems"

Duisburg-Essen University; Duisburg, Germany, April 25-27 (2018) 25. Colloquium, SUNY Buffalo; Buffalo, NY; March 29, 2018. 26. Colloquium, University of Toronto; Toronto, Canada; March 20, 2018. 27. Colloquium, Oregon State University; Corvallis, OR, Feb. 21, 2018. 28. Colloquium, University of Oregon; Eugene, OR; Feb. 19, 2018. 29. Colloquium, University of Alabama, Birmingham AL; Jan. 26, 2018. 30. University of British Columbia Quantum Mater Institute Workshop on Ultrafast

Control of Quantum Matter; Vancouver, Canada, Dec. 11-15, 2017. 31. Ito International Research Center Conference on Forefront of Molecular

Dynamics at Surfaces and Interfaces: from a single molecule to catalytic reaction, in honor of Prof. Maki Kawai, University of Tokyo, Nov. 20, 2017.

32. Ultrafast Dynamics and Metastability Workshop; Georgetown University, Washington DC, Nov. 12-15, declined for health reasons.

33. 2nd International Workshop on Electron Beam Spectroscopy for Nanophotonics; Stiges, Spain Oct. 25-27), declined for health reasons.

34. Colloquium, Ludwig-Maximilians University; Munich, Germany, July 14, 2017. 35. 30th International Vacuum Nanoelectronics Conference; Regensburg, Germany,

July 14, 2017. 36. Colloquium, University of Regensburg; Regensburg, Germany, July 11, 2017. 37. Colloquium, University of Erlangen-Nürnberg; Erlangen, Germany, July 10, 2017.

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38. 10th Conference on Ultrafast Surface Dynamics; Inzell, Germany, June 11, 2017. 39. CaSTL-Nanoscience Center, Jyväskylä University Workshop; Tervaniemi, Finland,

June 6, 2017. 40. CLEO/QELS Tutorial talk, San Jose, CA; May 18, 2017. 41. Colloquium, Penn State University, March 23, 2017. 42. APS March Meeting Focus Session on Frontiers at Interfaces: Probing the

Mechanisms of Interfacial Carriers Dynamics and Surface Reactions; New Orleans, March 16, 2017.

43. Colloquium University of Science and Technology of China, Feb. 20, 2017 44. Symposium, Lebanese American University; Beirut, Lebanon, Nov. 18, 2016. 45. OSA/APS Frontiers in Optics and Laser Science; Rochester, NY, Oct. 17-21, 2016. 46. DIET 15 Conference; Shanghai, China, Oct. 14, 2016. 47. International Vacuum Congress, IVC-20; Busan, Korea, Aug. 25, 2016. 48. Workshop on Ultrafast Dynamics in Nanoscale Systems; Okinawa Institute for

Science and Technology, Onna, Japan, July 16, 2016. 49. Wissenschaftlicher Abendvortrag (scientific evening), German Physical Society;

Berlin, Germany, June 7, 2016. 50. Colloquium, Fritz Haber Institute; Berlin, Germany, June 7, 2016. 51. International Conference on Internal Interfaces; Marburg, Germany, May 31-

June 3, 2016. 52. 30th Changjiang Lecture, Wuhan University Institute for Advanced Studies;

Wuhan, China, May 16, 2016. 53. Wuhan University, School of Physics & Technology; Wuhan, China, May 13, 2016.

54. Colloquium, Columbia University, New York, NY, March 29, 2016 55. Frontiers of Spectroscopy Lectures, Ohio State University, March 23-25, 2016. 56. Colloquium, University of Washington, Seattle, WA, Feb. 3, 2016 57. Colloquium, Keio University, Yokohama Japan, Jan. 15, 2016. 58. Keynote lecture, Pacifichem 2015, Symposium “Dynamical Processes of Light

Harvesting Surfaces;” Honolulu, HI Dec. 2015. 59. Pacifichem 2015, Symposium “Chemical Imaging: Frontiers of Spatio-Temporal

Resolution;” Honolulu, HI Dec. 2015. 60. APS Mid Atlantic Section Meeting; Morgantown, WV, Oct. 24, 2015. 61. AVS 62, Surface Science Division; San Jose, CA, Oct. 20, 2015. 62. Humboldt Lecture, Ringberg, Germany, Sept. 20, 2015. 63. Colloquium, University of Kaiserslautern, Kaiserslautern, Germany, July 24, 2015. 64. Colloquium, University of Erlangen-Nürnberg, Erlangen, Germany, July 22, 2015. 65. Colloquium, Max-Planck Institut für Biophysikalische Chemie, Göttingen,

Germany, July 20, 2015. 66. FEMTO12, Hamburg Conference on Femtochemistry; Hamburg, Germany, July 17,

2015. 67. 11th International Conference on Optics of Surfaces and Interfaces; Austin, TX,

June, 2015. 68. 9th Conference on Ultrafast Surface Dynamics; Lake Biwa, Japan, May 25, 2015.

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69. Femtosecond Electron Imaging and Spectroscopy 2; East Lansing, MI, May 7, 2015.

70. Colloquium, Fudan University; Shanghai, China, March 30, 2015. 71. Colloquium, Shaanxi Normal University; Xian, China March 23, 2015. 72. Zhongguancun Colloquium, Chinese Academy of Science; Beijing, March 20, 2015. 73. Colloquium, Kenyon College; Gambier, OH, Feb. 17, 2015. 74. Colloquium, University of Delaware; Newark, DE, Feb. 11, 2015. 75. Colloquium, University of Florida; Gainesville, FL, Jan, 21, 2015. 76. Colloquium, Fritz Haber Institute; Berlin, Germany, Dec. 9, 2014. 77. Colloquium, Free University Berlin; Berlin, Germany, Dec. 5, 2014. 78. Colloquium, ICFO; Barcelona, Spain; Nov. 7, 2014. 79. Colloquium, University of the Basque Country; San Sebastian, Spain; Nov. 3, 2014. 80. 16th Workshop on Dynamical Phenomena at Surfaces; Universidad Autónoma de

Madrid, Spain, Oct. 29, 2014. 81. RK Mellon Chair Inaugural Lecture; University of Pittsburgh, Oct. 23, 2014. 82. DIET 14 Conference; Asilomar, CA, Oct. 14, 2014. 83. The Inaugural Brahmagupta Physics Colloquium, IIT Chennai; Chennai, India, Oct.

1, 2014. 84. Colloquium, University of Pennsylvania; Philadelphia PA, Sept. 23 2014. 85. Gordon Research Conference on Atomic and Molecular Interactions; Stonehill

College, MA; July 13, 2014. 86. Workshop on Ultrafast Dynamics in Nanoscale Systems; Okinawa Institute for

Science and Technology, Onna, Japan, July 12, 2014. 87. Plenary talk, 2014 International Workshop on Nanomaterias & Nanodevices,

Beijing Academy of Sciences; Beijing, July 2, 2014. 88. Max Planck Institute for Microstructure Physics Colloquium; Halle, Germany,

May 22, 2014. 89. SFB 1083 Colloquium; Marburg, Germany, May 20, 2014. 90. Colloquium, Zhejiang University; Hongzhou, China, April 25, 2014. 91. ICQD Colloquium; USTC, Hefei, China, April 23, 2014. 92. PQI Symposium, University of Pittsburgh; Pittsburgh, PA, April 11, 2014. 93. Colloquium, Institute for Molecular Science; Okazaki, Japan Feb. 18, 2014. 94. Colloquium, Okinawa Institute for Science and Technology; Naha, Japan, Feb. 14,

2014. 95. Morino Lecture, Kyoto University; Kyoto, Japan, Feb. 10, 2014. 96. Colloquium, Tokyo University, Institute for Solid State Physics; Kashiwa, Japan

Feb. 7, 2014. 97. Colloquium, National Institute for Materials Science; Tsukuba, Japan Feb. 6, 2014. 98. Colloquium, Fritz Haber Institute; Berlin, Germany, Jan. 20, 2014. 99. Femtosecond Electron Imaging and Spectroscopy 2013; Key West, FL, Dec. 9,

2013. 100. Ultrafast Magnetism Conference 2013; Strasburg, France, Oct. 28, 2013. 101. AVS 2013, Nanometer Science and Technology Division; Long Beach, CA, Oct 27-

Nov. 1, 2013

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102. ACS 2013 Fall Meeting: “Symposium on Computational Photocatalysis”; Indianapolis, IN, Sept. 12, 2013.

103. Gordon Research Conference on Dynamics at Surfaces; Salve Regina, RI; Aug. 11, 2013.

104. Hayashi conference on Next Decades of Surface Science; Hayama, Japan, July 18, 2013.

105. Plenary talk, 2013 International Workshop on Nanomaterials & Nanodevices, Guilin University of Electronic Technology; Guilin, July 5, 2013.

106. Plenary talk, 2013 International Workshop on Nanomaterials & Nanodevices, Beijing Academy of Sciences; Beijing, July 2, 2013.

107. Colloquium, Marburg University; Marburg, Germany, June 20, 2013. 108. International Workshop on Ultrafast Nanooptics; Bad Dürkheim, Germany, June

16-19, 2013. 109. CLEO/QELS Symposium on Optical Excitations and Ultrafast Phenomena in

Condensed Matter, San Jose, CA; June, 9-14, 2013 110. SFB 616, “Energy Dissipation at Surfaces,” Bad Honnef, Germany; June 3, 2013. 111. 8th Conference on Ultrafast Surface Dynamics; Estes Park, CO; May 28, 2013. 112. Workshop on "Controlled atomic dynamics on solid surfaces: atom and

molecular manipulation;" San Sebastian, Spain; May 13, 2013 113. PQI Symposium, University of Pittsburgh; Pittsburgh, PA, April 18, 2013 114. Colloquium, Yale University; New Haven, CT, Jan. 25, 2013. 115. 6th Symposium of Low Dimensional Quantum States; Chinese Academy of

Sciences, Suzhou, China, Dec. 8, 2012. 116. Colloquium, Tsinghua University; Beijing, China Dec. 7, 2012. 117. Optics, Electronics, Quantum Systems Seminar Series, JILA: Boulder, CO, Oct. 26,

2012. 118. NFO-12; Near-field optics, Nanophotonics, and Related Phenomena; San

Sebastian, Spain, Sept. 3, 2012 119. W. M. Keck Symposium on “Imaging and Detection of Single Molecules:

Challenges and Opportunities;” National Academies Beckman Center, Irvine, CA Aug. 13, 2012.

120. 34-th DOE Solar Photochemistry meeting; Annapolis, MD; June 6, 2012. 121. X-rays in the Fourth Dimension; Chicago, IL, May, 5, 2012. 122. ICQD Colloquium; USTC, Hefei, China, April 25, 2012. 123. ACS 2012 Spring Meeting: “Frontiers of Catalysis;” San Diego, CA, March 26,

2012. 124. Colloquium, Global Center of Excellence; Kyoto University, March 6, 2012 125. Colloquium, Institute for Molecular Science; Okazaki, Japan, March 5, 2012 126. Colloquium, Department of Chemistry; Osaka University, Feb. 28, 2012 127. Colloquium, Global Center of Excellence; Osaka University, Feb. 28, 2012 128. Gordon Research Conference on Ultrafast Phenomena in Cooperative Systems;

Galveston, Texas, Feb. 19, 2012. 129. 52-nd Sanibel Symposium; Sanibel Island, SC, Feb. 20, 2012.

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130. SFB 951 Symposium on Hybrid Inorganic/Organic Systems for Opto-Electronics; Berlin, Germany, Dec. 16, 2011.

131. Centenary celebration of the Fritz-Haber Institute; Berlin, Oct. 26, 2011. 132. Proton Coupled Electron Transfer 2011, Loire Valley, France, Oct. 9-13, 2011. 133. ACS 2011 Fall Meeting: “Computational Modeling of Photocatalysis and

Photovoltaics”; Denver, CO, Aug. 28, 2011. 134. Symposium on the “Frontiers of Photocatalysis”, University of Science and

Technology, Hefei, China; July 12, 2011. 135. Pan-American Studies Institute on Frontiers of Imaging Science; Bogota,

Columbia, June 7-17, 2011. 136. International Workshop on Elementary Processes in Solids and Interfaces;

Kloster Banz, Germany, May 29-June 1, 2011. 137. Colloquium, Marburg University; Marburg, Germany, May 27, 2011. 138. International Symposium on Atomic Level Characterization of New Materials and

Devices ’11: Seoul, Korea, May 22-27, 2011. 139. Colloquium, University of California; Berkeley, CA, May 3, 2011. 140. Colloquium, Texas A&M; College Station TX, April 28, 2011. 141. Colloquium, University of Texas; Austin, TX, April 27, 2011. 142. APS March Meeting Focus Session on Fundamental Issues in Charge Transport in

Energy Applications; Dallas, TX, March 2011. 143. Colloquium, Fritz Haber Institute; Berlin, Germany, Dec. 2, 2010. 144. Symposium Magnetism and Ultrafast Dynamics at the Nanoscale; Halle, Germany,

Dec. 1, 2010. 145. Spectroscopic Society of Japan; Kyoto, Nov. 18, 2010. 146. Colloquium, Kyoto University; Kyoto, Nov. 17, 2010. 147. Colloquium, Osaka University; Osaka, Nov. 15, 2010. 148. Colloquium, IBM, T. J. Watson Research Center; Yorktown NY, Oct. 22, 2010. 149. DIPC Passion for Knowledge Workshop; San Sebastian Spain, Sept. 27, 2010. 150. CaSTL Symposium; University of California, Irvine; Sept 18, 2010. 151. Colloquium, JILA; Boulder CO; Sept. 7, 2010. 152. Plenary talk, 2010 International Workshop on Nanomaterias & Nanodevices,

Guizhou University; Guiyang, China, July 4, 2010. 153. Plenary talk, 2010 International Workshop on Nanomaterias & Nanodevices,

Beijing Academy of Sciences; Beijing, July 1, 2010. 154. Colloquium, Humboldt University; Berlin May 21, 2010. 155. Colloquium, Max-Born Institute; Berlin May 20, 2010. 156. Colloquium, Fritz Haber Institute; Berlin May 19, 2010. 157. Max Planck Society core committee of “MPI for Microstructure Physics”: Berlin

May 18, 2010. 158. Colloquium, Donostia International Physics Center; San Sebastian, Spain, Dec. 21,

2009. 159. Martin-Luther-Universität Halle-Wittenberg; Surface Science Group Seminar;

Halle, Germany: Dec. 17, 2009.

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160. DOE Condensed Phase and Interfacial Molecular Science Research Meeting; Warrenton, VA; Oct. 19, 2009.

161. Science 2009; University of Pittsburgh; Oct. 15, 2009. 162. Laser Science XXV; San Jose, CA; Oct. 14, 2009. 163. University of Minnesota, Center for Nanostructure Applications Colloquium; Oct.

12, 2009. 164. American Chemical Society, 238th Annual Meeting; Washington, DC; Aug. 19,

2009 165. International Conference on Photochemistry; Toledo, Spain; July 23, 2009 166. Colloquium, Westfaelische Wilhelms-Universitët; Münster, Germany; July 17,

2009. 167. 4th International Conference on XXIV International Conference on Surface

Plasmon Photonics, Amsterdam, Netherlands; June 24, 2009. 168. Colloquium, Argonne National Laboratory; Argonne, IL; May 13, 2009. 169. Desorption Induced by Electronic transitions (DIET) XII Conference; Pine

Mountain, GA; Apr. 20, 2009. 170. Colloquium, University of California; Irvine, CA; Apr. 28, 2009. 171. Colloquium, University of Colorado; Dec. 12, 2008. 172. Colloquium, University of Waterloo; Waterloo, Canada; Nov. 14, 2008. 173. Colloquium, National Institute for Materials Science; Tsukuba, Japan; Nov. 4,

2008. 174. 4th Vacuum and Surface Sciences Conference of Asia and Australia (VASSCAA-4);

Matsue, Japan; Oct. 29, 2008. 175. Colloquium, Kyoto University; Kyoto, Japan; Oct. 28, 2008. 176. OSA Optics and Photonics Congress; Rochester, NY; Oct. 23, 2008. 177. University of Wisconsin Synchrotron Radiation Center Users Meeting; Madison

WI; Sept. 28, 2008. 178. Colloquium, University of Wisconsin; Madison WI; Sept. 27, 2008. 179. ECOSS 25 - European Conference on Surface Science; Liverpool, UK; July 28, 2008. 180. Colloquium, Max Planck Institute for Quantum Optics; Munich, Germany, July 25,

2008. 181. 6th Conference on Ultrafast Surface Dynamics; Kloster Banz, Germany; July 20-25,

2008. 182. Colloquium, Institute of Physics, Zagreb, Croatia; July 14, 2008. 183. Ikerbasque symposium; Bilbao, Spain; July 10, 2008. 184. Colloquium, Institute of Photonic Sciences, Barcelona, Spain; July 7, 2008. 185. University of California Symposium on Surface Science and its Applications; Santa

Barbara, CA; June 19, 2008. 186. XVI International Conference on Ultrafast Phenomena; Stresa, Italy; June 9-13,

2008 187. 1st DIPC-nanoGUNE-ICFO meeting, San Sebastian, Spain; May 20, 2008. 188. UltraFast 2008; DIPC, San Sebastian, Spain; May 7, 2008. 189. University of Stuttgart; Stuttgart, Germany; April 23, 2008. 190. FOM Amsterdam; Amsterdam, Holland; April 21, 2008.

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191. American Chemical Society National Meeting; New Orleans, LA; April 8, 2008. 192. Brookhaven National Laboratory; April 4, 2008. 193. Instituto de Optica – CSIC; Madrid, Spain; March 25, 2008. 194. Saitama Chamber of Commerce; Saitama City, Japan; March 12, 2008. 195. Donostia International Physics Center; San Sebastian, Spain, Feb. 14, 2008. 196. University of Genoa; Genoa, Italy; Feb. 8, 2008. 197. Gordon Research Conference on Ultrafast Phenomena in Cooperative Systems; Il

Ciocco, Barga, Italy, Feb. 3-9, 2008. 198. Free University; Berlin, Germany; Jan. 18, 2008. 199. Max-Born Institute; Berlin, Germany; Jan. 17, 2008. 200. Fritz-Haber Institute; Berlin, Germany; Jan. 16, 2008. 201. Marburg University, Colloquium; Marburg, Germany; Nov. 19, 2007. 202. Canadian Institute for Advanced Research; Vancouver, Canada; Nov. 9, 2007. 203. American Vacuum Society Symposium on Plasmonics; Seattle, WA Oct. 2007. 204. International Conference on Molecular Photonics: Interaction of light with

Nanostructured Materials; San Juan Islands, WA; Aug. 31, 2007. 205. Gordon Research Conference on Dynamics at Surfaces; Andover, NH; Aug. 15,

2007. 206. Attosecond Physics 07; Dresden, Germany; Aug. 4, 2007. 207. University of Wisconsin X-ray Laser Workshop; Madison, WI; June 18, 2007. 208. IEEE local chapter seminar, Seagate Technology; Pittsburgh, PA; June 12, 2007. 209. University of Toronto, Department of Chemistry; Toronto Canada June 1, 2007. 210. Colloquium, the State Key Laboratory of Molecular Reaction Dynamics, Dalian

Institute of Chemical Physics; Dalian, China: March 9, 2007. 211. Colloquium, National Laboratory for Physical Sciences at the Microscale,

University of Science & Technology of China; Hefei, China: March 5, 2007. 212. Colloquium, University of California at Santa Barbara; Jan. 26, 2007. 213. Gordon Research Conference on Renewable Energy; Ventura, CA; Jan. 24, 2007. 214. SPIE, Photonics West: Symposium on “Ultrafast Phenomena in Semiconductor

and Nanostructured Materials IX”; San Jose, CA; Jan. 22, 2007. 215. SSRL-ALS Workshop on X-ray Science; Stanford, CA; Oct. 11, 2007. 216. Second International Workshop of the Collaborative Research Centre SFB 616

"Energy Dissipation at Surfaces," Schloss Eichholz, Germany; Sept. 27, 2006. 217. American Chemical Society Fall Meeting; San Francisco, CA; Sept. 12, 2006. 218. ECOSS 24 - European Conference on Surface Science, Paris, France: Sept. 7, 2006. 219. SPIE 2006 Annual Meeting, Conference on Physical Chemistry of Interfaces and

Nanomaterials V; San Diego, CA; Aug. 17, 2006. 220. SPIE 2006 Annual Meeting, Conference on Metal Nanoplasmonics; San Diego,

CA; Aug. 13, 2006. 221. Conference on Lasers and Electro-Optics, CLEO/QELS 2006 Symposium on

Nonlinear Nanophotonics; Long Beach, CA; May, 25, 2006. 222. Institute for Molecular Science Photoscience Symposium; Okazaki, Japan; May

19, 2006. 223. NIST, Gaithersburg, MD; April 20, 2006.

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224. University of Maryland, Chemical Physics/Physical Chemistry Colloquium; College Park, MD; April 19, 2006.

225. European Physical Society Meeting; Dresden, Germany; March 31, 2006. 226. NEDO Molecular Electronics Symposium; Sendai, Japan; Dec. 11, 2005. 227. Northwestern University, Nanoscience Colloquium; Evanston, IL; Nov. 11, 2005. 228. DOE Condensed Phase and Interfacial Molecular Science Research Meeting;

Warrenton, VA; Oct. 25, 2005. 229. Science 2005; University of Pittsburgh, Pittsburgh, PA; Oct. 7, 2005. 230. Condensed Matter Physics Seminar; Michigan State University, East Lansing, MI;

Oct. 3, 2005. 231. Ultrafast Dynamics of Collective Excitations in Solids; Vitte, Hiddensee Islands,

Germany; Sept. 13, 2005. 232. SPIE 2005 Annual Meeting, Conference on Physical Chemistry of Interfaces and

Nanomaterials; San Diego, CA; Aug. 2, 2005. 233. SPIE 2005 Annual Meeting, Conference on Plasmonics; San Diego, CA; July 31,

2005. 234. Femtochemistry VII; Washington DC; July 20, 2005. 235. International Quantum Electronics Conference; Tokyo, Japan; July 12, 2005. 236. Photon science series seminar; Institute for Molecular Science, Okazaki, Japan;

July 6, 2005. 237. Workshop on Ultrafast Soft X-Ray Science at LCLS; Stanford, CA; June 28, 2005. 238. International RIKEN Nanoscience and Technology Conference; Iizuna Kogen,

Japan; June 22, 2005. 239. Colloquium, BESSY II; Berlin, Germany; May 30, 2005. 240. Informal 2PPE Discussion; Berlin, Germany; May 27, 2005. 241. Colloquium Donostia International Physics Center; San Sebastian, Spain; May 24,

2005. Invited and Review Articles:

1. M. Dąbrowski, Y. Dai, and H. Petek, “Ultrafast Photoemission Electron Microscopy of Plasmonic Excitations in Metals,” Chem. Rev. xxx, xxxx (2019).

2. H. Petek, “Introduction of the special Issue of Progress in Surface Science in honor of Prof. Maki Kawai’s contributions to science.” Prog. Surf. Sci. 93, 85-86 (2018).

3. M. Dąbrowski, Y. Dai, and H. Petek, “Ultrafast Microscopy: Imaging Light with Photoelectrons on the Nano-Femto Scale,” Perspective article in J. Chem. Phys. Lett. 8, 4446 (2017).

4. H. Petek, “Photoemission Electron Microscopy: Photovoltaics in Action,” News &Views article in Nature Nano. 12, 3 (2017).

5. H. Petek, “Viewpoint: The Calisthenics of Surface Femtochemistry,” Physics 9, 123 (2016).

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6. H. Petek, “Imaging: Nano Meets Femto,” News &Views article in Nature Nano. 11, 404 (2015).

7. H. Petek, “Single Molecule Femtochemistry – Molecular Imaging at the Space-Time-Limit,” ACS Nano (invited Perspective Article) 8, 5 (2014).

8. M. Hase, M. Katsuragawa, A. M. Constantinescu, and H. Petek, “Coherent Phonon Induced Optical Modulation in Semiconductors at Terahertz Frequencies,” New J. Phys. 15, 055018 (2013).

9. T. Huang, J. Zhao, M. Feng, A. Popov, S. Yang, L. Dunsch, and H. Petek “A Multi-state Single-molecule Switch Actuated by Rotation of an Encapsulated Cluster within a Fullerene Cage,” Chem. Phys. Lett. Frontiers Article 552, 1 (2012).

10. H. Petek, “Photoexcitation of Adsorbates on Metal Surfaces: One-step or Three Step,” J. Chem. Phys. 137, 091704 (2012). (Invited Essay in the Special Issue on Surface Photochemistry)

11. A. Kubo, and H. Petek, “Imaging of Surface Plasmon Polariton Fields by Femtosecond Laser Excited Photoemission Electron Microscopy,” Hyoumen Kagaku (Journal of the Surface Science Society of Japan) 33, 235 (2012) (in Japanese).

12. M. Feng, C. Lin, J. Zhao, and H. Petek, “Orthogonal intermolecular interactions of CO molecules on a one-dimensional substrate,” Ann. Rev. Phys. Chem. 63, 201 (2012).

13. M. Feng, J. Zhao, T. Huang, X. Y. Zhu, and H. Petek, “The Electronic Properties of Superatom States of Hollow Molecules,” Acc. Chem. Res. 44, 360 (2011).

14. H. Petek and J. Zhao, “Ultrafast Interfacial Proton-coupled Electron Transfer,” Chem. Rev. 110, 7082 (2010).

15. T. Minato, Y. Sainoo, Y. Kim, H. S. Kato, K.-I. Aika, M. Kawai, J. Zhao, H. Petek, T. Huang, W. He, B. Wang, Z. Wang, Y. Zhao, J. Yang, and J. G. Hou “The Electronic Structure and Spatial Distribution of Excess Charge Created by Oxygen Atom Vacancies on Titanium Dioxide Surfaces,” Hyoumen Kagaku (Journal of the Surface Science Society of Japan) 31, 474-479 (2010) (in Japanese).

16. A. Kubo and H. Petek, "Femtosecond Time-resolved Photoemission Electron Microscope Studies of Surface Plasmon Dynamics,” J. Vac. Soc. Jap. 51, 368 (2008) (in Japanese).

17. K. Ishioka, M. Hase, M. Kitajima, and H. Petek, “Diamonds are Forever… Oscillating Coherently,” SPIE Newsroom (2007).

18. A. Kubo, Y. S. Jung, H. K. Kim, and H. Petek, “Femtosecond Microscopy of Localized and Propagating Surface Plasmons in Silver Gratings” J. Phys. B 40, S259 (2007).

19. H. Petek, "Editorial," Prog. Surf. Sci. 82, 1 (2007).

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20. J. Yates, and H. Petek, “Introduction: Photochemistry and Photophysics on surfaces,” Chem. Rev. 106, 4113 (2006).

21. J. Zhao, B. Li, K. Onda, M. Feng, and H. Petek, “Solvated Electrons on Metal Oxide Surfaces,” Chem. Rev. 106, 4402 (2006).

22. A. Kubo, K. Onda, H. Petek, Z. Sun, Y.-S. Jung, and H. -K. Kim, “Femtosecond imaging of surface plasmon dynamics,” SPIE Nanotechnology 8, 3 (2005).

23. M. Kitajima, M. Hase, and H. Petek, “Real Time Observation of Fano Interference in Si” Butsuri (Bulletin of the Physical Society of Japan) 59, 888-892 (2004) (in Japanese).

24. H. Petek and S. Ogawa, “Surface Femtochemistry: Observation and Quantum Control of Frustrated Desorption of Alkali Atoms from Noble Metals,” Ann. Rev. Phys. Chem. 53, 507 (2002).

25. H. Petek, M. J. Weida, H. Nagano, and S. Ogawa, “Surface Femtochemistry: Frustrated Desorption of Alkali Atoms from Noble Metals,” Feature Article, J. Phys. Chem. 105, 6767 (2001).

26. S. Ogawa, H. Nagano, and H. Petek, “Time-resolved Two-photon Photoemission Studies of Surfaces,” Nihon Butsuri Gakkai Shu, 54, 543 (1999) (in Japanese).

27. S. Ogawa and H. Petek, “Femtosecond Two-photon Time-Resolved Photoemission Spectroscopy,” Kotai Butsuri 33, 199 (1998) (in Japanese).

28. S. Ogawa and H. Petek, “Two-photon Time-resolved Photoemission,” Hyoumen Kagaku 19, 72 (1998) (in Japanese).

29. H. Petek and S. Ogawa, “Femtosecond Time-resolved Two-Photon Photoemission Studies of Electron Dynamics in Metals,” Prog. Surf. Sci. 56, 239 (1997).

30. S. Ogawa and H. Petek, “Limits and Applications of Femtosecond Lasers” Kagaku and Kogaku 49, 916 (1996), (invited; in Japanese).

31. W.D. Lawrance, C.B. Moore, and H. Petek, "Understanding Molecular Dynamics Quantum-State by Quantum-State," Science 227, 895 (1985).

Books and Book Chapters:

32. M. Feng and H. Petek, “Scrutinizing the Endohedral Space: Superatom States and Molecular Machines,” chapter in Endohedral Fullerenes: Electron Transfer and Spin, A. Popov ed., Springer (2017)

33. A. Winkelmann, C.-T. Chiang, C. Tusche, A.A. Ünal, A. Kubo, L. Wang, and H. Petek, “Ultrafast multiphoton photoemission microscopy of solid surfaces in the real and reciprocal space,” chapter in Dynamics of interfacial electron and excitation transfer in solar energy conversion: theory and experiment, P. Piotrowiak, ed., Royal Society of Chemistry, Cambridge (2013).

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34. Dynamics at Solid Surfaces and Interfaces, Vol. 2: Fundamentals. U. Bovensiepen, H. Petek, and M. Wolf eds., Wiley, Weinheim (2012).

35. H. Petek and A. Kubo, “Ultrafast microscopy of plasmon dynamics in nanostructured surfaces metal,” chapter in Handbook of Instrumentation and Techniques for Semiconductor Nanostructure Characterization, pp183-210. R. Haight, F. Ross, and J. Hannon eds., World Scientific Press (2011).

36. H. Petek, M. Feng, and J. Zhao, “The Electronic structure of Metal-Molecule Interfaces,” chapter in Current Driven Phenomena in Nanoelectronics, pp 1-25. T. Seideman ed., Pan Sanford, Singapore (2011).

37. Dynamics at Solid Surfaces and Interfaces, Vol. 1: Current developments. U. Bovensiepen, H. Petek, and M. Wolf eds., Wiley, Weinheim (2010).

38. A. Winkelmann, C.-T. Chiang F. Bisio, W.-C. Lin, J. Kirschner, and H. Petek, “Higher order photoemission from metal surfaces,” chapter in Dynamics at Solid Surfaces and Interfaces, Vol. I, pp 33-51 U. Bovensiepen, H. Petek, and M. Wolf, eds., Wiley (2010).

39. H. Petek, "Physical Chemistry of Photochromism - Reaction Mechanism" chapter in Photochromism in Organic Molecules, Kikan Kagaku Sosetsu 28,Y. Taniguchi, and M. Irie eds., Gakkai Shuppan Center, Tokyo (1996); pp 25-48 (invited; in Japanese).

40. W.D. Lawrance, C.B. Moore, and H. Petek, "Understanding Molecular Dynamics Quantum-State by Quantum-State," in Frontiers in the Chemical Sciences, W. Spindel and R.M. Simon, eds., American Association for the Advancement of Science, Washington (1986); pp 17-32.

Refereed Journal Articles: 41. M. Reutzel, A. Li, and H. Petek, ”Above-threshold Multiphoton Photoemission

from Noble Metal Surfaces,” Phys. Rev. B, (submitted).

42. Y. Dai, Z. Zhou, A. Ghosh, C. –B. Huang, and H. Petek, “Ultrafast Microscopy of a Plasmonic Spin Skyrmion,” Phys. Rev. X (submitted).

43. M. Reutzel, A. Li, Zehua Wang, and H. Petek, ”Ultrafast quasiparticle dressing by light,” Nature, (submitted).

44. Y. Dai and H. Petek, “Plasmonic spin Hall effect in surface plasmon polariton focusing,” ACS Photonics 6, 2005 (2019).

45. Y. Dai, Z. Zhou, A. Ghosh, R. S. K. Mong, A. Kubo, C. –B. Huang, and H. Petek, “The birth of a quasiparticle on the nano-femto scale: An optical spin skyrmion in a vortex core,” Nature (under review).

46. X. Cui, D. Han, H. Guo, L. Zhou, J. Qiao, Q. Liu, Z. Cui, Y. Li, C. Lin, L. Cao, W. Ji, H. Petek, M. Feng, “Realizing Nearly-Free-Electron Like Conduction Band in a

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Molecular Film through Mediating Intermolecular Van der Waals Interactions,” Nature Commun. 10, 3374 (2019).

47. K. Ishioka, A. Beyer, W. Stolz, K. Volz, H. Petek, U. Höfer, and C. J. Stanton, “Coherent optical and acoustic phonons generated at lattice-matched GaP/Si(001) heterointerfaces,” J. Phys.: Condens. Matter 31, 094003(2019).

48. H. Shang, A. Argondizzo, S. Tan, J. Zhao, P. Rinke, C. Carbogno, M. Scheffler, and H. Petek, “Electron-phonon coupling in d-electron solids: A temperature dependent study of rutile TiO2 by first-principles theory and two-photon photoemission,” Phys. Rev. X (submitted).

49. J. Ren, Y. Wang, J. Zhao, S. Tan, and H. Petek, “K atom promotion of molecular O2 chemisorption on Au(111) Surface,” J. Am. Chem. Soc. 141, 4438 (2019).

50. M. Reutzel, Andi Li, Branko Gumhalter, and Hrvoje Petek, ”The Nonlinear Plasmonic Photoelectron Response of Ag(111),” Phys. Rev. Lett. 123, 017404 (2019).

51. Y. Watanabe, K.-I. Hino, N. Maeshima, H. Petek, and M. Hase, “Ultrafast Asymmetric Rosen-Zenner-like Coherent Phonon Responses Observed in Silicon,” Phys. Rev. B 99, 174304 (2019).

52. M. Reutzel, A. Li, and H. Petek, “Coherent Two-Dimensional Multiphoton Photoelectron Spectroscopy of Metal Surfaces,” Phys. Rev. X 9, 011044 (2019).

53. S. Zhang, C. Wang, B. Gumhalter, and H. Petek, “Attosecond Multi-Electron Coulomb Dynamics in Photoinduced Surface Charge Transfer,” Nature (submitted).

54. H. Sun, S. Tan, M. Feng, J. Zhao, and H. Petek, “Deconstruction of the Electronic Properties of a Topological Insulator with a Two-dimensional Noble Metal-organic Honeycomb Lattice,” J. Phys Chem. C 122, 18659 (2018).

55. Y. Dai, M. Daąbrowski, V. A. Apkarian, and H. Petek, “Ultrafast Microscopy of Spin-Momentum Locked Surface Plasmon Polaritons,“ ACS Nano 12, 6588 (2018).

56. S. Tan, Y. Dai, S. Zhang, L. Liu, J. Zhao, and H. Petek, “Coherent Electron Transfer at Ag/graphite Heterojunction Interface,” Phys. Rev. Lett. 120, 126801(2018).

57. Q. Zheng, W. A. Saidi, Y. Xie, Z. Lan, O. V. Prezhdo, H. Petek, and J. Zhao, “Phonon-Assisted Ultrafast Charge Transfer at van der Waals Heterostructure Interface,” Nano Lett. 17, 6435 (2017).

58. K. Ishioka, A. Rustagi, A. Beyer, W. Stolz, K. Volz, U. Höfer, H. Petek, and C. J. Stanton, “Subpicosecond Acoustic Pulses at Buried GaP/Si Interfaces,” Appl. Phys. Lett. 111, 062105 (2017).

59. S. Tan, J. Ren, L. Liu, J. Zhao, H. Petek, “Ultrafast Plasmon-Enhanced Hot Electron Generation at Ag Nanocluster/Graphite Heterojunctions,” J. Am. Chem. Soc. 139, 6160 (2017).

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60. S. Tan, A. Argondizzo, L. Liu, J. Zhao, and H. Petek, “Plasmonic Coupling at a Photovoltaic Interface,” Nature Photon 11, 806 (2017).

61. K. Ishioka, A. Rustagi, U. Höfer, H. Petek, C. Stanton “Intrinsic coherent acoustic phonons in the indirect band gap semiconductors Si and GaP,” Phys. Rev. B 95, 0325205 (2017).

62. S. Tan, A. Argondizzo, X. Cui, and H. Petek, “Ultrafast Multiphoton Electronic Heating of Graphite,” Phys. Rev. X 7, 011004 (2017).

63. M. Dąbrowski, Y. Dai, M. Hocevar, S. Frolov and H. Petek “Nanoscale Guiding and Shaping of Indium Droplets,” Appl. Phys. Lett. 109, 261602 (2016).

64. W. Chu, W. A. Saidi, Q. Zheng, Y. Xie, Z. Lan, O. Prezhdo, H. Petek, and J. Zhao, “Ultrafast Dynamics of Photon-Generated Holes at CH3OH/TiO2 Rutile Interface,” J. Am. Chem. Soc. 138, 13740 (2016).

65. M. Dąbrowski, Y. Dai, A. Argondizzo, Q. Zou, X. Cui, and H. Petek, “Multiphoton photoemission microscopy of high-order plasmonic resonances at the Ag/vacuum and Ag/Si interfaces of epitaxial Ag nanowires,” ACS Photonics 9, 1704 (2016).

66. A. Argondizzo, S. Tan, and H. Petek, “Resonant Two-Photon Photoemission from Ti-3d Defect States of TiO2(110) Revisited,” J. Phys. Chem. C 120, 12959 (2016).

67. K. Ishioka, K. Brixius, A. Beyer, A. Rustagi, C. J. Stanton, W. Stolz, K. Volz, U. Höfer, and H. Petek, “Coherent Phonon Characterization of Electronic Bands of at Buried Semiconductor Heterointerfaces,” Appl. Phys. Lett. 108, (2016).

68. S. Zhang, C. Wang, X. Cui, Y. Wang, A. Argondizzo, J. Zhao, and H. Petek, “Time-Resolved Photoemission Study of the Electronic Structure and Dynamics of Chemisorbed Alkali Atoms on Ru(0001),” Phys. Rev. B 93, 045401 (2016).

69. K. Ishioka, K. Brixius, U. Höfer, A. Rustagi, E. M. Thatcher, C. J. Stanton, and H. Petek, “Dynamically Coupled Plasmon-Phonon Modes in GaP: an Indirect, Polar Semiconductor,” Phys. Rev. B 92, 205203 (2015).

70. M. Feng, J. Zhao, H. Petek, F. Calaza, M. Sterrer, H.-J. Freund, “Cooperative Chemisorption Induced Physisorption of CO2 Molecules by Metal-Organic Chains,” ACS Nano 9, 12124 (2015).

71. V. M. Silkin, P. Lazić, N. Došlić, H. Petek, and B. Gumhalter, “Ultrafast Electronic Response of Cu(111) and Ag(111) Surfaces: From Early Electronic Transients to Saturated Image Potential,” Phys. Rev. B 92, 155405 (2015).

72. H. Sun, D. J. Mowbray, A. Migani, J. Zhao, H. Petek, and A. Rubio, “Comparing Quasiparticle H2O Level Alignment on Anatase and Rutile TiO2,” ACS Catalysis 5, 4242 (2015).

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73. A. Argondizzo, X. Cui, C. Wang, H. Sun, H. Shang, Jin Zhao, and H. Petek, “Ultrafast multiphoton pump-probe photoemission pathways in rutile TiO2,” Phys. Rev. B, 155429 (2015).

74. A. K. Basak, H. Petek, K. Ishioka, E. M. Thatcher, and C. J. Stanton, “Ultrafast coupling of coherent phonons with the non-equilibrium electron-hole plasma in GaAs,” Phys. Rev. B 91,125201 (2015).

75. A. Migani, D. J. Mowbray, J. Zhao, and H. Petek, “Quasiparticle interfacial level alignment of highly hybridized frontier orbitals: H2O on TiO2(110),” J. Chem. Theory Comput. 11, 239 (2014).

76. J. Zhao, M. Feng, D. B. Dougherty, and H. Petek, “Molecular electronic level alignment at weakly coupled organic film/metal interfaces,” ACS Nano 8, 10988 (2014).

77. M. Feng, H. Sun, J. Zhao, and H. Petek, “Self-Catalyzed Carbon Dioxide Adsorption by Metal-Organic Chains on Gold Surfaces,” ACS Nano 8, 8644 (2014).

78. J. Zhao and H. Petek “Nonnuclear Attractors as Conductive Channels in Molecular Electronics” Phys. Rev. B 90, 075412 (2014).

79. X. Cui, C. Wang, A. Argondizzo, S. Garrett-Roe, B. Gumhalter, and H. Petek, “Transient Excitons at Metal Surfaces,” Nature Phys. 10, 505 (2014).

80. M. Li, S. Huang, Q. Wang, H. Petek, K. P. Chen, “Nonlinear optical localization in embedded chalcogenide waveguide arrays,” AIP Advances 4, (2014).

81. A. Migani, D. J. Mowbray, J. Zhao, H. Petek, and A. Rubio, “Quasiparticle Level Alignment for Photocatalytic Interfaces,” J. Chem. Theory Comput. 10, 2103 (2014).

82. J. Zhao, Q. Zheng, H. Petek, and J. Yang, “Non-Nuclear Nearly Free Electron Conduction Channels in Nanotube-Molecular Sheet Composites Induced by Charge Doping,” J. Phys. Chem. A 118, 7255 (2014).

83. M. Li, S. Huang, Q. Wang, K. P. Chen, and H. Petek, “Ultrafast Laser Fabrication of Nonlinear Lightwave Circuits in Chalcogenide Glasses,” Opt. Lett. 39, 693 (2014).

84. L.-M. Wang and H. Petek, “Focusing Surface Plasmon Polariton Wave Packets in Space and Time,” Laser Photonics Rev. 7, 1003 (2013).

85. L. Zhang, A. Kubo, L.-M. Wang, H. Petek, and T. Seideman, “Universal Aspects of Ultrafast Optical Pulse Scattering by a Nanoscale Asperity,” J. Phys. Chem. C 117, 18648 (2013).

86. M. Feng, J. Zhao, C. Lin, T. Huang, S. Yang, and H. Petek, “Energy Stabilization of the s-Symmetry Superatom Molecular Orbital by Endohedral Doping of C82 Fullerene with a Lanthanum Atom, Phys. Rev. B 88, 075417 (2013).

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87. A. Migani, D. J. Mowbray, A. Iacomino, J. Zhao, H. Petek, and A. Rubio, “Level Alignment of a Prototypical Photocatalytic System: Methanol on TiO2(110),” J. Am. Chem. Soc. 135, 11429 (2013).

88. K. Ishioka, K Kato, H. Ohashi, H. Haneda, M. Kitajima, and H. Petek, “Effect of n- and p-Doping on Coherent Phonons in GaN,” J. Phys.: Condens. Matter 25, 205404 (2013).

89. K. Ishioka and H. Petek, “Nonresonant Raman Generation of Coherent Phonons of Anatase and Rutile TiO2,” Phys. Rev. B 86 (2012).

90. D. B. Dougherty, M. Feng, H. Petek, J. T. Yates, Jr., and J. Zhao, “Band Formation in a Molecular Quantum well via 2D Superatom Orbital Interactions,” Phys. Rev. Lett. 109, 266802 (2012).

91. L.-M. Wang, L. Zhang, T. Seideman, and H. Petek, “Dynamics of Coupled Plasmon Polariton Wave Packets Excited at a Subwavelength Slit in Optically Thin Metal Films,” Phys. Rev. B 86, 165408 (2012).

92. M. Hase, M. Katsuragawa, A. M. Constantinescu, and H. Petek, “Frequency Comb Generation at THz Frequencies by Coherent Phonon Generation in Si,” Nature Photon 6, 243 (2012).

93. C. Lin, M. Feng, J. Zhao, P. Cabrera-Sanfelix, D. Sánchez Portal, A. Arnau, and H. Petek, “Theory of Orthogonal Interactions of CO molecules on a One-dimensional Substrate,” Phys. Rev. B 85, 125426 (2012).

94. L. Zhang, A. Kubo, L. Wang, H. Petek, and T. Seideman, “Imaging Surface Plasmon Polariton Fields Excited at a Nanometer-scale Slit,” Phys. Rev. B 84, 245442 (2011).

95. T. Huang, J. Zhao, M. Feng, A. A. Popov, S. Yang, L. Dunsch, and H. Petek, “ A molecular switch based on current-driven rotation of an encapsulated cluster inside a fullerene cage,” Nano Lett. 11, 5327 (2011).

96. K. Ishioka, A. Basak, and H. Petek, “Allowed and Forbidden Raman Scattering Mechanisms for Detection of Coherent LO Phonon and Plasmon-Coupled Modes in GaAs”, Phys. Rev. B 84, 235202 (2011).

97. M. Feng, P. Cabrera-Sanfelix, C. Lin, A. Arnau, D. Sanchez-Portal, P. M Echenique, J. Zhao, and H. Petek, “Orthogonal interactions of CO molecules on a one-dimensional substrate,” ACS Nano 5, 8877 (2011).

98. R. Jorn, T. Seideman J. Zhao, and H. Petek, “Current-Driven Dynamics in Molecular Junctions. Endohedral Fullerenes,” ACS Nano 5, 7858 (2011).

99. F. Bisio, A. Winkelmann, C. -T. Chiang, H. Petek, and J. Kirschner, “Band structure Effects in Above Threshold Photoemission,” J. Phys.: Condens. Matter 23, 485002 (2011).

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100. L. Wang, V. Sametoglu, A. Winkelmann, J. Zhao, and H. Petek, “Two-photon Photoemission Study of the Coverage Dependent Electronic Structure of Chemisorbed Alkali Atoms on Metal Surfaces,” J. Phys. Chem. A 115, 9479 (2011)

101. K. Ishioka, H. Petek, V. E. Kayadashev, E. M. Kaidashev, and O. V. Mischoko, “Coherent Optical Phonons of ZnO under Near Resonant Photoexcitation,” J. Phys.: Condens. Matter 22, 465803 (2010).

102. S. Hu, J. Zhao, Y. Jin, J. Yang, H. Petek, and J. G. Hou, “Nearly Free-Electron States of Carbon and Boron Nitride Nanotubes,” Nano Lett. 10, 4830 (2010).

103. L. Chiodo, J.-M. García-Lastra, A. Iacomino, S. Ossicini, J. Zhao, H. Petek and A. Rubio, “Self-Energy and Excitonic Effects in the Electronic and Optical Properties of TiO2 Crystalline Phases,” Phys. Rev. B 82, 045207 (2010).

104. T. Huang, J. Zhao, M. Feng, H. Petek, S. Yang, L. Dunsch, “Superatom Orbitals of Sc3N@C80 and their Hybridization on Cu(110)-(2×1)-O surface,” Phys. Rev. B 81, 085434 (2010).

105. S. Achilli, M. I. Trioni, V. Sametoglu, N. Pontius, A. Winkelmann, A. Kubo, J. Zhao, and H. Petek, “Spectral properties of Cs and Ba on Cu(111) at very low coverage on noble metal surfaces,” Phys. Rev. B 80, 245419 (2009).

106. J. Zhao, J. Yang, and H. Petek, “Theoretical study of the molecular and electronic structure of methanol on a TiO2(110) surface,” Phys. Rev. B 80, 235416 (2009).

107. A. Winkelmann, F. Bisio, W.-C. Lin, C.-T. Chiang, H. Petek, and J. Kirschner Resonant coherent three-photon photoemission from Cu(001),” Phys. Rev. B 80, 155128 (2009).

108. F. Bisio, A. Winkelmann, W.-C. Lin, M. Nyvlt, H. Petek, and J. Kirschner, “Band structure effects in surface second harmonic generation: the case of Cu(001),” Phys. Rev. B 80, 125432 (2009).

109. V. M. Silkin, J. Zhao, F. Guinea, E. V. Chulkov, P. M. Echenique, and H. Petek “Image potential states in graphene,” Phys. Rev. B 80, 121408 (2009).

110. J. Zhao, M. Feng, and H. Petek, “The superatom states of fullerenes and their hybridization into the nearly free electron bands of fullerites”, ACS Nano 3, 853 (2009).

111. T. Minato, Y. Sainoo, Y. Kim, H. S. Kato, K. –I. Aika, M. Kawai, J. Zhao, H. Petek, T. Huang, W. He, B. Wang, Z. Wang, Y. Zhao, J. Yang, and J. G. Hou, “The electronic structure of oxygen atom vacancy and hydroxyl impurity defects on titanium dioxide (110) surface,” J. Chem. Phys. 130, 124502 (2009).

112. K. Kato, K. Ishioka, M. Kitajima, J. Tang, R. Saito, and H. Petek, “Coherent phonon anisotropy in aligned single-walled carbon nanotubes,” Nano Lett. 8, 3102 (2008).

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113. A. G. Borisov, V. Sametoglu, A. Winkelmann, A. Kubo, N. Pontius, J. Zhao, V. M. Silkin, J. P. Gauyacq, E. V. Chulkov, P. M. Echenique, and H. Petek, “p resonance of chemisorbed alkali atoms on noble metals” Phys. Rev. Lett. 101, 266801 (2008).

114. J. Zhao, N. Pontius, A. Winkelmann, V. Sametoglu, A. Kubo, A. G. Borisov, D. Sánchez-Portal, V. M. Silkin, E. V. Chulkov, P. M. Echenique, and H. Petek, “The electronic potential of a chemisorption interface” Phys. Rev. B 78, 085419 (2008).

115. A. Winkelmann, F. Bisio, W.-C. Lin, H. Petek, and J. Kirschner, “Interferometric control of spin-polarized electron populations at a metal surface observed by multi-photon photoemission,” Phys. Rev. Lett. 100, 206601 (2008).

116. M. Feng, J. Zhao, and H. Petek, “Atomlike, Hollow-core-Bound Molecular Orbitals of C60” Science 320, 359 (2008).

117. See also: http://www.nature.com/nchem/reshigh/2008/0508/full/nchem.4.html

118. K. Ishioka, M. Hase, M. Kitajima, L. Wirtz, A. Rubio, and H. Petek, “Femtosecond Coherent Quasiparticle Correlations in a Nonequilibrium Plasma in Graphite,” Phys. Rev. B. (Rapid Communication) 77, 121402-4 (2008). (also Virt. J. Ultrafast Sci.)

119. M. Feng, J. Lee, J. Zhao, J. T. Yates, Jr., and H. Petek, “Nanoscale Templating of Close-Packed Fullerene Nanowires,” JACS 129, 12394 (2007).

120. A. Winkelmann, V. Sametoglu, J. Zhao, A. Kubo, and H. Petek, “Angle-dependent study of a direct optical transition in the sp-bands of Ag(111) by one- and two-photon photoemission” Phys. Rev. B. 76, 195428 (2007).

121. D. B. Dougherty, P. Maksymovych, J. Lee, M. Feng, H. Petek, and J.T. Yates, Jr., “Tunneling Spectroscopy of Stark-shifted Image Potential States on Cu and Au Surfaces,” Phys. Rev. B 76, 125428 (2007).

122. M. Fuyuki, K. Watanabe, D. Ino, H. Petek, and Y. Matsumoto, “Excitation Mechanism of Coherent Surface Phonons at Na-covered Cu(111) Surfaces,” Phys. Rev. B 76, 115427 (2007). (also Virt. J. Nanoscale. Sci. Tech)

123. A. Winkelmann, F. Bisio, R. Ocaña, W.-C. Lin, M. Nyvlt, H. Petek, and J. Kirschner, “Ultrafast optical spin injection into image-potential states of Cu(001),” Phys. Rev. Lett. 98, 226601 (2007). (also Virt. J. Ultrafast Sci.; Virt. J. Nanoscale. Sci. Tech)

124. A. Kubo, N. Pontius, and H. Petek, “Femtosecond Microscopy of Surface Plasmon Polariton Wave Packet Evolution at the Silver/Vacuum Interface,” Nano Lett. 7, 470 (2007).

125. K. Ishioka, M. Hase, M. Kitajima, and H. Petek, “Coherent Optical Phonons in Diamond,” Appl. Phys. Lett. 89, 231916 (2006). (also Virt. J. Ultrafast Sci.)

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126. J. Zhao, B. Li, K. D. Jordan, J. Yang, and H. Petek, “The Interplay between Hydrogen Bonding and Electron Solvation on Hydrated TiO2(110) Surfaces,” Phys. Rev B. 73, 195309 (2006).

127. B. Li, J. Zhao, K. Onda, K. D. Jordan, J. Yang, and H. Petek, “Ultrafast Interfacial Proton-Coupled Electron Transfer,” Science 311, 1436 (2006). (also Virt. J. Ultrafast Sci.)

128. F. Bisio, M. Nyvlt, J. Franta, H. Petek, and J. Kirschner, “Mechanisms for High-order Perturbative Photoemission from Metals,” Phys. Rev. Lett. 96, 087601 (2006).

129. A. Kubo, K. Onda, H. Petek, Z. Sun, Y.-S. Jung, and H. -K. Kim, “Femtosecond imaging of surface plasmon dynamics in a nano-structured silver film,” Nano Lett. 5, 1123-1127 (2005).

130. M. Nyvlt, F. Bisio, J. Franta, C. L. Gao, H. Petek, and J. Kirschner, “Surface Magnetism During Oxygen-Aided Fe Homoepitaxy,” Phys. Rev. Lett. 95, 127201 (2005).

131. N. Pontius, V. Sametoglu, and H. Petek, “Simulation of Two-photon Photoemission from the Bulk sp-Bands of Ag(111),” Phys. Rev. B 72, 115105 (2005). (also Virt. J. Ultrafast Sci.)

132. K. Onda, B. Li, and H. Petek, “Femtosecond Photoinduced Charge Transfer Dynamics on TiO2(110) Surfaces,” Surf. Sci. 593, 32 (2005).

133. K. Onda, B. Li, J. Zhao, K. D. Jordan, J. Yang, and H. Petek, “Wet electrons at the H2O/TiO2(110) Surface,” Science 308, 1154 (2005). (also Virt. J. Ultrafast Sci.; Virt. J. Nanoscale. Sci. Tech)

134. K. Onda, B. Li, and H. Petek, “Two-photon Photoemission Spectroscopy of TiO2 (110) Surfaces Modified by Defects and O2 and H2O Adsorbates,” Phys. Rev. B 70, 045415 (2004).

135. M. Hase, M. Kitajima, A. M. Constantinescu, and H. Petek, “The Birth of a Quasiparticle Observed in Time-Frequency Space,” Nature 426, 51 (2003). (also Virt. J. Ultrafast Sci.; Virt. J. Nanoscale. Sci. Tech)

136. S. Gao, H. Petek, J. Aizpurua, and S. P. Apell, “Coherence and Decoherence of a Localized Excitation on a Surface Localized Adatom,” Chin. Phys. Lett. 19, 1195 (2002).

137. S. Ogawa, H. Nagano, H. Petek, “Optical Intersubband Transitions and Femtosecond Dynamics in Ag/Fe(100) Quantum Wells,” Phys. Rev. Lett. 88, 116801 (2002). (also Virt. J. Nanoscale. Sci. Tech)

138. T. Tomaru and H. Petek, “Effect of Third-Order Dispersion on the Phases of Soliton-like Cr4+:YAG –Laser Pulses Characterized by the Second-Harmonic-Generation-Frequency-Resolved-Optical Gating Method,” J. Opt. Soc. Am. B. 18, 388 (2001).

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139. M. J. Weida, S. Ogawa, H. Nagano, and H. Petek, “Parallel Excitation Pathways in Ultrafast Interferometric Pump-Probe Correlation Measurements of Hot Electron Lifetimes in Metals” Appl. Phys. A 71, 553 (2000).

140. H. Petek, H. Nagano, M. J. Weida, and S. Ogawa, “Quantum Control of Nuclear Motion at a Metal Surface,” J. Phys. Chem. A 104, 10234 (2000).

141. M. J. Weida, S. Ogawa, and H. Petek, “Comment on “Coherence and Relaxation in Potassium-Doped Helium Droplets Studied by Femtosecond Pump-Probe Spectroscopy”, Phys. Rev. Lett. 84, 4509 (2000).

142. T. Tomaru and H. Petek, “Femtosecond Cr4+:YAG Laser with an L-fold Cavity and 1.2 GHz Repetition Rate,” Opt. Lett. 25, 584 (2000).

143. H. Petek, H. Nagano, M. J. Weida, and S. Ogawa, “Real Time Observation of Atomic Motion Above a Metal Surface,” Science 288, 1402 (2000).

144. M. J. Weida, S. Ogawa, H. Nagano, and H. Petek, “Ultrafast Interferometric Pump/probe Correlation Measurements in Systems with Broadened Bands or Continua,” J. Opt. Soc. Am. B 17, 1443 (2000).

145. H. Petek, M. J. Weida, H. Nagano, and S. Ogawa, “Electronic Relaxation of Alkali Metal Atoms on the Cu(111) Surface,” Surf. Sci. 451, 22 (2000).

146. B. Gumhalter and H. Petek, “Decoherence Effects in Propagation of Optically Generated Electron-hole Pairs in Image Potential States,” Surf. Sci. 445, 195 (2000).

147. H. Petek, M. J. Weida, H. Nagano, and S. Ogawa, “The Role of Auger Recombination in Hot Electron Excitation in Copper,” Chem. Phys. 251, 71 (2000).

148. H. Petek, H. Nagano, and S. Ogawa, “Hole Decoherence in d-bands of Copper,” Phys. Rev. Lett. 83, 832 (1999).

149. T. Sjodin, H. Petek, C. -M. Li, and H. -L. Dai, “Ultrafast Transient Grating Scattering Studies of Carrier Dynamics at a Silicon Surface,” Chem. Phys. 251, 205 (2000).

150. H. Petek, H. Nagano, and S. Ogawa, “Hot-electron Dynamics in Copper Revisited: The d-band Effect,” Appl. Phys. B 68, 369 (1999).

151. S. Ogawa, H. Nagano, and H. Petek, “Electron Dynamics of the Cs Anti-bonding State on Copper,” Appl. Phys. B 68, 611 (1999).

152. S. Ogawa, H. Nagano, and H. Petek, “Optical Decoherence and Quantum Beats in Cs/Cu(111),” Surf. Sci. 427/428, 34 (1999).

153. T. Miyake, I. Oodake, and H. Petek, “Lateral Thermal Expansion of Cu(110) Surface Studied with Helium Atom Scattering,” Surf. Sci. 427/428, 39 (1999).

154. S. Ogawa, H. Nagano, and H. Petek, “Direct Measurement of Phase and Energy Relaxation of a Cs Anti-bonding State on Cu(111),” Phys. Rev. Lett. 82, 1931 (1999).

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155. T. Sjodin, H. Petek, and H. -L. Dai, “Ultrafast Carrier Dynamics in Silicon: a Two-color Transient Reflection Grating Study on a (111) Surface,” Phys. Rev. Lett. 81, 5664 (1998).

156. T. Miyake and H. Petek, “Atomic Hydrogen modification of Copper Surfaces Studied by Helium Atom Scattering,” Appl. Surf. Sci. 121/122, 138 (1997).

157. W. Nessler, S. Ogawa, H. Nagano, H. Petek, J. Shimoyama, Y. Nakayama, and K. Kishio, “Electron Dynamics in High Temperature Superconductors: A Femtosecond Time-resolved Two-Photon Photoemission Study on Bi2Sr2CaCu2O8+d,” Phys. Rev. Lett. 81, 4480 (1998).

158. W. Nessler, S. Ogawa, H. Nagano, H. Petek, J. Shimoyama, and K. Kishio, “A Femtosecond time-resolved study of the energy and temperature dependence of hot-electron lifetimes in Bi2Sr2CaCu2O8+d,” J. Electron. Spectrosc. Related Phenom., 88-91, 495 (1998).

159. H. Petek, A. P. Heberle, W. Nessler, H. Nagano, S. Kubota, S. Matsunami, N. Moriya, and S. Ogawa, “Optical Phase Control of Coherent Electron Dynamics in Metals,” Phys. Rev. Lett. 79, 4649 (1997).

160. T. Miyake, E. S. Gillman, I. Oodake, and H. Petek, “Compact He Scattering Apparatus for Surface Studies,” Jap. J. Appl. Phys. 36, 149 (1997).

161. T. Miyake, H. Petek, K. Takeda, and K. Hinode, “Atomic Hydrogen Enhanced Reflow of Copper,” Appl. Phys. Lett. 70, 1239 (1997).

162. S. Ogawa, H. Petek, and A. Heberle, “Optical Dephasing in Cu(111) Measured by Interferometric Two-photon Time-resolved Photoemission,” Phys. Rev. Lett. 78, 1339 (1997).

163. S. Ogawa, H. Nagano, and H. Petek, “Hot-electron Dynamics at Cu(100), Cu(110), and Cu(111) Surfaces: Comparison of Experiment with the Fermi Liquid Theory,” Phys. Rev. B 55, 10869 (1997).

164. S. Ogawa and H. Petek, "Femtosecond Dynamics of Hot-electron Relaxation in Cu(110) and Cu(100)," Surf. Sci. 357-358, 585 (1996).

165. T. Miyake, E. S. Gillman, I. Oodake and H. Petek, "Electron Irradiation Effect on CaF2(111) Studied with He Atom Scattering," Surf. Sci. 357-358, 155 (1996).

166. S. Ogawa and H. Petek, "Two-photon Photoemission Spectroscopy at Clean and Oxidized Cu(110) and Cu(100) Surfaces," Surf. Sci. 363, 313 (1996).

167. S. Kumazaki, H. Kandori, H. Petek, K. Yoshihara, and I. Ikegami, "Rapid Equilibration of Exaction Energy Among Chlorophylls and Trap-Limited Primary Charge Separation in P700-Enriched Photosystem I Particle," J. Phys. Chem. 98, 10335 (1994).

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168. H. Petek, A.J. Bell, Y. S. Choi, K. Yoshihara, B. A. Tounge, and R.L. Christensen, "One- and Two-photon Fluorescence Excitation Spectra of the 21Ag States of Linear Tetraenes in Free Jet Expansions," J. Chem. Phys. 102, 4726 (1995).

169. Y. S. Choi, T.-S. Kim, H. Petek, K. Yoshihara, and R.L. Christensen, "Evidence for Quantization of the Transition State for cis-trans Isomerization,” J. Chem. Phys. 100, 9269 (1994).

170. P. B. Bisht, H. Petek, K. Yoshihara, and U. Nagashima, "Excited State Keto-enol Tautomerization in Salicylic Acid: A Supersonic Free Jet Study," J. Chem. Phys. 103, 5290 (1995).

171. H. Petek, A. J. Bell, Y. S. Choi, K. Yoshihara, B. A. Tounge, and R.L. Christensen "The 21Ag State of all-trans-1,3,5,7-Octatetraene in Free Jet Expansions,” J. Chem. Phys. 98, 3777 (1993).

172. P. B. Bisht, H. Petek, and K. Yoshihara, "Exciplex Formation in van der Waals Complexes of Naphthalene-Triethyl Amine in a Supersonic Jet," Chem. Phys. Lett. 213, 75 (1993).

173. H. Sekiya, M. Habu, H. Ujita, T. Tsuji, A. Mori, H. Takeshita, Y. Nishimura, H. Petek, and K. Yoshihara, "Dual Fluorescence and Excited-State Intramolecular Proton Transfer in Jet-cooled 3,4-Benzotropolone," Chem. Phys. Lett. 215, 641 (1993).

174. H. Petek, A. J. Bell, R.L. Christensen, and K. Yoshihara, "Fluorescence Excitation Spectra of the S1 States of Isolated Trienes," J. Chem. Phys. 96, 2412 (1992).

175. R. Howell, D. Phillips, H. Petek, and K. Yoshihara, "Fluorescence of Jet-cooled Dimethylaminobenzonitrile, it's Aggregates and Solvated Complexes" Chem. Phys. 188, 303 (1994).

176. H. Petek, A. J. Bell, K. Yoshihara, and R. Christensen, "Spectroscopic and Dynamical Studies of the S1 and S2 States of Decatetraene in Supersonic Molecular Beams," J. Chem. Phys. 95, 4739 (1991).

177. R. Howell, H. Petek, D. Phillips, and K. Yoshihara, "An Investigation of the Fluorescence Behavior of 4-(N,N) Dimethylaminobenzonitrile Cooled in a Supersonic Jet," Chem. Phys. Lett. 183, 249 (1991).

178. J. H. Frederick, Y. Fujiwara, J. H. Penn, K. Yoshihara, and H. Petek, "Models for Stilbene Photoisomerization: The Experimental and Theoretical Studies of the Excited State Dynamics of 1,2-Diphenylcycloalkenes," J. Phys. Chem. 95, 2845 (1991)

179. H. Petek, K. Yoshihara, Y. Fujiwara, Z. Lin, J. H. Penn, and J. H. Frederick, "Is the Nonraditive Decay of S1 cis-Stilbene Due to the Dihydrophenanthrene Isomerization Channel? Suggestive Evidence from Photophysical Measurements on 1,2-Diphenylcycloalkenes," J. Phys. Chem. 94, 7539 (1990).

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180. H. Petek, Y. Fujiwara, K. Yoshihara, and J. G. Frey, "Isomerization of cis-Stilbene in Rare Gas Clusters. Direct Measurements of trans-Stilbene Formation Rates on Picosecond Time Scale," J. Opt. Soc. Am. B 7, 1540 (1990).

181. H. Petek, D.J. Nesbitt, J.C. Owrutsky, C.S. Gudeman, X. Yang, D.O. Harris, C.B. Moore, and R.J. Saykally, "A Study of the Structure and Dynamics of the Hydronium Ion by High Resolution Infrared Laser Spectroscopy. III. The n3 Band of D3O+ ," J. Chem. Phys. 92, 3257 (1990).

182. H. Petek, D.J. Nesbitt, D.C. Darwin, P.R. Ogilby, C.B. Moore, and D.A. Ramsay, "The Infrared Spectrum of Singlet Methylene: Analysis of the Coriolis and Spin-Orbit Perturbations," J. Chem. Phys. 91, 6566 (1989).

183. H. Petek, Y. Fujiwara, D. Kim, and K. Yoshihara, "Fluorescence Excitation Spectroscopy of Supersonically Cooled cis-Stilbene," J. Am. Chem. Soc. 110, 6269 (1988).

184. H. Petek and K. Yoshihara, "Photochemical Timing. Application to Intramolecular Vibrational Redistribution in trans-Stilbene," J. Chem. Phys. 87, 1458 (1987).

185. H. Petek, D.J. Nesbitt, C.B. Moore, F.W. Briss, and D.A. Ramsay, "Visible Absorption and Magnetic Rotation Spectroscopy of 1CH2: The Determination of the 1A1 State Structure and Analysis of Singlet-Triplet Coupling," J. Chem. Phys. 86, 1189 (1987).

186. H. Petek, D.J. Nesbitt, D.C. Darwin, and C.B. Moore, "Visible Absorption and Magnetic Rotation Spectroscopy, of 1CH2: The Analysis of the 1A1 State," J. Chem. Phys. 86, 1172 (1987).

187. D.J. Nesbitt, H. Petek, M.F. Foltz, S.V. Filseth, D.J. Bamford, and C.B. Moore, "Photofragmentation Dynamics of Ketene at 308 nm: Nascent Vibrational and Rotational State Distributions of CO Product by Vacuum UV Laser-Induced Fluorescence," J. Chem. Phys. 83, 223 (1985).

188. D.J. Nesbitt, H. Petek, C.S. Gudeman, C.B. Moore, and R.J. Saykally, "A Study of the n1 Fundamental and Bend-excited Hot Band of DNN+ by Velocity Modulation Absorption Spectroscopy with an Infrared Difference Frequency Laser," J. Chem. Phys. 81, 5281 (1984).

189. A. O. Langford, H. Petek and C. B. Moore, "Collision Complex Formation in the Reactions of Formyl Radicals with Nitric Oxide and Oxygen," J. Chem. Phys. 80, 4211 (1984).

190. H. Petek, D.J. Nesbitt, P.R. Ogilby, and C.B. Moore, "Infrared Flash Kinetic Spectroscopy: The n1 and n3 Spectra of Singlet Methylene," J. Phys. Chem. 83, 5367 (1983).

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191. A.O. Langford, H. Petek, and C.B. Moore, "Collisional Removal of 1CH2 (1A1): Absolute Rate Constants for Atomic and Molecular Collision Partners at 295 K," J. Chem. Phys. 78, 6650 (1983).

Refereed Conference Proceedings:

192. H. Petek, “Ultrafast Microscopy of Electronic Excitations in Nanostructured Materials”, Conference on Lasers and Electro-Optics, San Jose, California, Optical Society of America: San Jose, California, 2017; p FTh4F.1.

193. K. Ishioka, A. Rustagi, A. Beyer, W. Stolz, K. Volz, U. Hüfer, “Ultrafast strain pulses generated at buried GaP/Si interfaces,” in Ultrafast Phenomena 2016. Santa Fe; Code 134038 (2016).

194. X. Cui, C. Wang, A. Argondizzo, and H. Petek, “Mechanisms of Multiphoton Photoemission from Metal Surfaces,” In Ultrafast Magnetism I. J.-Y. Bigot et al. eds. Springer Proceedings 159. Springer International, Switzerland 2015.

195. M. Hase, M. Katsuragawa, A. M. Constantinescu, and H. Petek, “Coherent phonon frequency comb generated by few-cycle femtosecond pulses in Si,” in Ultrafast Phenomena XVIII. S. Cundiff, K. Yamanouchi, and R. de Vivie-Riedle, Springer-Verlag, Berlin; pp 687-689 (2012).

196. K. Ishioka, A. K. Basak, and H. Petek, “Depth-dependent Detection Mechanisms of Coherent Phonons in n-Type GaAs,” in Ultrafast Phenomena XVIII. S. Cundiff, K. Yamanouchi, and R. de Vivie-Riedle, Springer-Verlag, Berlin; pp 687-689 (2012).

197. H. Petek and J. Zhao, “Ultrafast spectroscopy of photocatalytic reactions on single crystal TiO2 surfaces,” Abstracts of the 2010 Annual Meeting of the Spectroscopical Society of Japan, Kyoto, Japan (2010)

198. H. Petek, J. Zhao, and M. Feng, “Atomic-like quantum structures of C60 molecular assemblies – invited talk,” J. Phys: Cond. Mat. (in press).

199. H. Petek and A. Kubo, “Ultrafast photoemission electron microscopy: imaging light with electrons on the femto-nano scale,” in Ultrafast Phenomena XVI. P. Corkum, S. Di Silvestri, K. A. Nelson, E. Riedle, and R. W. Schoenlein, Springer-Verlag, Berlin; pp 687-689 (invited; 2009).

200. K. Kato, K. Ishioka, M. Kitajima, J. Tang, H. Petek, “Ultrafast dynamics of coherent phonons in the aligned single-walled carbon nanotubes,” in Ultrafast Phenomena XVI. P. Corkum, S. Di Silvestri, K. A. Nelson, E. Riedle, and R. W. Schoenlein, Springer-Verlag, Berlin; pp 259-261 (2009).

201. A. Kubo, N. Pontius, H. Petek, “Femtosecond Microscopy of Surface Plasmon Propagation in a Silver Film,” in Ultrafast Phenomena XV. R.J. Dwayne Miller and Andrew M. Weiner eds., Springer-Verlag, Berlin (2006) pp 636-638 (invited).

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202. J. Zhao, K. Onda, B. Li, and H. Petek, “Ultrafast proton-coupled electron transfer in heterogeneous photocatalysis,” SPIE Proceedings 6325, 63250W (2006; invited).

203. K. Onda, B. Li, and H. Petek, “Surface Femtochemistry: Photocatalytic Reaction Dynamics of Methanol /TiO2(110),” in Ultrafast Phenomena XIV. T. Kobayashi, T. Okada, T. Kobayashi, K. Nelson, and S. De Silvestri eds., Springer-Verlag, Berlin (2005) pp 416-418.

204. A. Kubo, K. Onda, H. Petek, Z. Sun, Y.-S. Jung, and H. -K. Kim, “Imaging of Localized Silver Plasmon Dynamics with sub-fs Time and Nano-meter Spatial Resolution,” in Ultrafast Phenomena XIV. T. Kobayashi, T. Okada, T. Kobayashi, K. Nelson, and S. De Silvestri eds., Springer-Verlag, Berlin (2005) pp 645-649 (invited).

205. M. Kitajima, M. Hase, A. M. Constantinescu, and H. Petek, “Ultrafast Dynamics of Coherent Electron-phonon Interaction in Silicon,” in Ultrafast Phenomena XIV. T. Kobayashi, T. Okada, T. Kobayashi, K. Nelson, and S. De Silvestri eds., Springer-Verlag, Berlin (2005) pp 242-244.

206. M. J. Weida, S. Ogawa, H. Nagano, and H. Petek, “Analysis of Hot Electron Cascades in Copper,” in Ultrafast Phenomena XII. M. Murnane, N. Scherer, and S. Mukamel Eds. Springer-Verlag, Berlin (2000) pp 416-418.

207. S. Ogawa, H. Nagano, and H. Petek, "Decoherence and Control of Electrons at a Metal Surface," in Quantum Coherence and Decoherence, ISQM 5 Proceedings, edited by K. Fujikawa and Y. A. Ono, (Elsevier, Amsterdam 1999) pp 277.

208. H. Petek, H. Nagano, and S. Ogawa, “Direct Measurement of the Valence Band Decoherence in Copper,” in Ultrafast Phenomena XI. T. Elsaesser, J. G. Fujimoto, D. A. Wiersma, and W. Zinth Eds. Springer-Verlag, Berlin (1998) pp 325-329 (invited).

209. H. Petek, H. Nagano, W. Nessler, S. Ogawa, and A. P. Heberle, “Optical Phase Control of Coherent Electron Dynamics in Copper,” SPIE Proceedings 3272, 221 (1998).

210. T. Sjodin, H. -L. Dai, and H. Petek, “Ultrafast Carrier Dynamics near a Si Surface: A Reflective Transient Grating Study,” SPIE Proceedings 3272, 238 (1998).

211. T. Miyake, H. Petek, K. Takeda, and K. Hinode, “Effects of Atomic Hydrogen on Cu Reflow Process,” in Stress Induced Phenomena in Metallization, AIP Conference Proceedings 418, H. Okabayashi, S. Shingubara, and P. Ho eds. p. 419 (1997).

212. S. Ogawa and H. Petek, "Hot-electron Dynamics at Cu Surfaces." in Ultrafast Phenomena X. P. F. Barbara, J. G. Fujimoto, W. H. Knox, and W. Zinth eds. Springer-Verlag, Berlin (1996) pp 450-451.

213. S. Ogawa and H. Petek, "Dephasing and Population Relaxation of Hot-electrons at Metal Surfaces," in Quantum Coherence and Decoherence, ISQM 5

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Proceedings, edited by K. Fujikawa and Y. A. Ono, (Elsevier, Amsterdam 1996) pp 203 - 206.

214. S. Ogawa and H. Petek, "Femtosecond Dynamics of Hot-electrons at Clean Cu(110) and Cu(100) Surfaces," SPIE Proceedings 2547, 73 (1995).

215. P. B. Bisht, H. B. Tripathi, D. D. Pant, H. Petek, and K. Yoshihara, "Excited State Intramolecular Proton Transfer Studies in Salicylic Acid at Cryogenic Temperatures and Under Supersonic Free Jet," Workshop on Advanced Laser Spectroscopy, proceedings, Kampur 1995.

216. H. Petek, T. Miyake, S. Ogawa, H. Kajiyama, and S. Yamamoto, "He Diffraction Studies of Adsorbates on Metal Surfaces," SPIE Proceedings 2125, 242 (1994).

217. H. Petek, A. J. Bell, R.L. Christensen, and K. Yoshihara, "Vibrational Spectroscopy and Picosecond Dynamics of gaseous trienes and Tetraenes in S1 and S2 Electronic States," SPIE Proceedings 1638, 345 (1992).

218. K. Yoshihara, H. Petek, Y. Fujiwara, J.H. Penn, and J.H. Frederick, "Vibrational Mode Dynamics of Photocyclization in cis-Stilbene and It's Related Compounds," in Time Resolved Spectroscopy V. H. Takahashi ed., Springer-Verlag, Berlin (1992) 194.

219. H. Petek, A.J. Bell, H. Kandori, K. Yoshihara, and R.L. Christensen, "Spectroscopy and Dynamics of a Model Polyene Decatetraene: a Study of Non-radiative Pathways in S1 and S2 States Under Isolated Conditions," in Time Resolved Spectroscopy V. H. Takahashi ed., Springer-Verlag, Berlin (1992) 198.

220. H. Petek and K. Yoshihara, Y. Fujiwara, and J.G. Frey, "Isomerization of cis-Stilbene in Ar and Kr Clusters. Direct Measurements of trans-Stilbene Formation Rates on Picosecond Time Scale." in Ultrafast Phenomena VII. C. B. Harris, E. P. Ippen, G. A. Mourou, and A. H. Zewail eds. Springer-Verlag, Berlin (1990) pp 444-446.

221. H. Petek and K. Yoshihara, "Investigation of Ultrafast Radiationless Processes in Isolated Molecules," in Proceedings of the 5-th International Symposium on Ultrafast Phenomena in Spectroscopy, Z. Rudzikas, A. Piskarkas, and R. Baltramiejunas, eds., World Scientific, Singapore, (1988) pp 339-350.