Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT &...

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Transcript of Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT &...

Page 1: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 2: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input

 Alternative Energy ›  Price

  Evolution ›  Concentrators ›  Plasmonics

  Silicon Wafers   Thin Film Solar Cells

Page 3: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 4: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 5: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 6: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input

 Nanoparticles ›  Metallics

  Shapes   Sizes   Location

›  Organic components

Page 7: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 8: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 9: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 10: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input

  The Finite-Difference Frequency-Domain (FDFD)

  Begins as ›  Electromagnetic field Calculation ›  Maxwell Equation ›  Simplified as a system of linear equations

  Using various boundary conditions and initial conditions.

 Results as:

Page 11: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 12: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 13: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 14: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input
Page 15: Alternative Energyreu.cct.lsu.edu/documents/first-presentation/Reynolds-Plasmonics.pdfLI=D PEDOT & metal grating layer Cupc for L : length (wavelength) , *used ta creat multi input

  Test ›  New materials ›  Design ideas

  Learn ›  More in plasmonics ›  Fortran encoding ›  Working with HPC