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Optical modelling of thin film microstructures literature review: Revision history
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9 June 2023
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14 April 2023
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20 December 2018
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→Controlling optical absorption in metamaterial absorbers for plasmonic solar cells
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5 September 2015
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→Abstract
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29 December 2011
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06:30, 29 December 2011
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/* Optical properties of Fabry–Perot microcavity with organic light emitting materialsB. Y. Jung, N. Y. Kim, C. H. Lee, C. K. Hwangbo, and C. Seoul, “Optical properties of Fabry–Perot microcavity with organic light emitting materials,” Curren
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/* Characterization of nanostructured GaSb: comparison between large-area optical and local direct microscopic techniquesI. S. Nerb et al., “Characterization of nanostructured GaSb: comparison between large-area optical and local direct microscopic
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28 December 2011
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/* Growth of vacuum evaporated ultraporous silicon studied with spectroscopic ellipsometry and scanning electron microscopyK. Kaminska, A. Amassian, L. Martinu, and K. Robbie, “Growth of vacuum evaporated ultraporous silicon studied with spectrosco
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/* =Monoclinic optical constants, birefringence, and dichroism of slanted titanium nanocolumns determined by generalized ellipsometryD. Schmidt, B. Booso, T. Hofmann, E. Schubert, A. Sarangan, and M. Schubert, “Monoclinic optical constants, birefri
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/* Optimization of open circuit voltage in amorphous silicon solar cells with mixed-phase (amorphous+nanocrystalline) p-type contacts of low nanocrystalline contentJ. M. Pearce et al., “Optimization of open circuit voltage in amorphous silicon sola
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/* Raman scattering by longitudinal optical phonons in InN nanocolumns grown on Si(1 1 1) and Si(0 0 1) substratesS. Lazić et al., “Raman scattering by longitudinal optical phonons in InN nanocolumns grown on Si(1 1 1) and Si(0 0 1) substrates,”
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/* Broadband and omnidirectional antireflection from conductive indium-tin-oxide nanocolumns prepared by glancing-angle deposition with nitrogenC. H. Chang, P. Yu, and C. S. Yang, “Broadband and omnidirectional antireflection from conductive indium
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/* Broadband and omnidirectional antireflection from conductive indium-tin-oxide nanocolumns prepared by glancing-angle deposition with nitrogenC. H. Chang, P. Yu, and C. S. Yang, “Broadband and omnidirectional antireflection from conductive indium
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/* Gallium nitride nanorod arrays as low-refractive-index transparent media in the entire visible spectral regionH.-Y. Chen, H.-W. Lin, C.-Y. Wu, W.-C. Chen, J.-S. Chen, and S. Gwo, “Gallium nitride nanorod arrays as low-refractive-index transparen
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→Light propagation in nanorod arraysA. I. Rahachou and I. V. Zozoulenko, “Light propagation in nanorod arrays,” Journal of Optics A: Pure and Applied Optics, vol. 9, no. 3, pp. 265-270, Mar. 2007
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/* Simulation of the Optical Absorption Spectra of Gold Nanorods as a Function of Their Aspect Ratio and the Effect of the Medium Dielectric ConstantS. Link, M. B. Mohamed, and M. A. El-Sayed, “Simulation of the Optical Absorption Spectra of Gold N
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/* Infrared and Raman spectroscopy of ZnO nanoparticles annealed in hydrogenW. M. Hlaing Oo, M. D. McCluskey, J. Huso, and L. Bergman, “Infrared and Raman spectroscopy of ZnO nanoparticles annealed in hydrogen,” Journal of Applied Physics, vol. 1
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→The measurement of absorption edge and band gap properties of novel nanocomposite materials
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→===[http://jap.aip.org/resource/1/japiau/v84/i3/p1196_s1 Optical-field calculations for lossy multiple-layer AlxGa1−xN/InxGa1−xN laser diodes<ref name
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→===[http://jap.aip.org/resource/1/japiau/v101/i3/p033113_s1 Fabry-Perot effects in InGaN/GaN heterostructures on Si-substrate<ref name
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→===[http://jap.aip.org/resource/1/japiau/v101/i3/p033113_s1 Fabry-Perot effects in InGaN/GaN heterostructures on Si-substrate<ref name
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Optical Modelling of Thin Film Microstructures literature review
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Optical modelling of thin film microstructures literature review
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