Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha,...

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Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois at Chicago FRISNO 11 Aussois, France March 31, 2011

Transcript of Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha,...

Page 1: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Coherent Phase Control of Electronic Transitions in

Gallium Arsenide

Robert J. Gordon, Sima Singha, and Zhan HuDepartment of Chemistry

University of Illinois at Chicago

FRISNO 11 Aussois, FranceMarch 31, 2011

Page 2: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

F. Crim

Passive Control

Page 3: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Active Control

Page 4: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

JPC

Page 5: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Outline

• Motivation and methods

• Results from open loop experiments

• Results from closed loop experiments

• Proposed mechanism

• Conclusions

Page 6: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Cut in Decemet’s Membrane

6 ns, 1064 nm

30 ps, 1064 nm

Vogel, et al., Invest. Ophthalmol. Vis. Sci. 35, 3033 (1997)

Page 7: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Surface Modification with Ultrafast Pulses

Stoian, et al., Appl.Phys.Lett. 80, 353 (2002)

Page 8: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

SEM images of the ablation craters on GaAs 1, 5 and 5+1 pulse trains

Page 9: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.
Page 10: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.
Page 11: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Outline

• Motivation and methods

• Results from open loop experiments

• Results from closed loop experiments

• Proposed mechanism

• Conclusions

Page 12: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Phys. Rev. B 82, 115205 (2010)

LIBS/Photoluminescence Spectrum

Page 13: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Effect of Laser Polarization

Page 14: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

PL Signal at 450.8 nm

Page 15: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Control Landscape

Page 16: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Effects of Polarization and Incidence Angle

Page 17: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Effect of Laser Fluence

Page 18: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Effect of Laser Phase

Page 19: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Outline

• Motivation and methods

• Results from open loop experiments

• Results from closed loop experiments

• Proposed mechanism

• Conclusions

Page 20: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Closed Loop Control

Sine phase optimized for 390-450 nm

sine phase optimized for 420-440 nm

random phase optimized for 390-450 nm

J. Phy. Chem. A (in press)

Page 21: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

20100528-115537PRB paper graph

Optimum Pulse Shapes for Open and Closed Loops

Page 22: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Effect of Laser Fluence

Page 23: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Effect of Laser Polarization on Optimized PL Spectrum

Page 24: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Effect of Laser Phase on Open-Loop Spectrum

Page 25: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Effect of Laser Phase on Closed-Loop Spectrum

Page 26: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Outline

• Motivation and methods

• Results from open loop experiments

• Results from closed loop experiments

• Proposed mechanism

• Conclusions

Page 27: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Mechanistic Questions

• Where does the new band come from?

• How is it possible to excite optical phonons at fluences above the threshold for melting?

• How does light couple to the plasma?

• How does energy couple to the phonons?

• Where does the coherence come from?

Page 28: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.
Page 29: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Ratio of double pulse to single pulse fluorescence as a function of delay time and total energy

Si<111>

App. Phys. Lett. 90, 131910 (2007), J. Appl. Phys. 104, 113520 (2008)

Page 30: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

• Dispersion relation for a light wave in a plasma:

• Critical density:

• Index of refraction:

• Total reflection:

peL

LpeL ck

2222

2

2

4 e

mn Lecr

2

22 11

L

pe

cr

e

n

nn

22 cos;sin)( cre nnz

Light Propagation in a Plasma

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Brunel or vacuum heating

Page 32: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Comparison of Closed and Open-Loop Pulses

Page 33: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Conclusions• Coherent control of carrier recombination was achieved

at fluences well above the damage threshold.• The primary mechanism for open loop control appears to

be phonon-hole scattering, with trapping of carriers in the L-valley.

• Brunel (ponderomotive) heating launches ballistic electrons that excite the phonons.

• Effect of laser phase suggests a competition between photoemission and phonon excitation.

• Random phase optimization appears to converge to a different control pathway.

Page 34: Coherent Phase Control of Electronic Transitions in Gallium Arsenide Robert J. Gordon, Sima Singha, and Zhan Hu Department of Chemistry University of Illinois.

Yaoming Lu, Youbo Zhao, Slobodan MilasinovicJohn Penczak, Sima Singha, Zhan Hu

Supported by NSF, USAF Surgeon General, UIC

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TmmA /2sin 0

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Time Delay Scans

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Properties of the Optimum Pulse vs. Fluence