Biblio

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Conference Paper
A. G. Aberle, Wenham, S. R., and Green, M. A., A New Method for the Accurate Measurements of the Lumped Series Resistance of Solar Cells, in Proceedings of the 23rd IEEE Photovoltaic Specialists Conference, Louisville, KY, 1993.
R. Corkish, Luke, K. L., Altermatt, P. P., and Heiser, G., Simulating Electron-Beam-Induced Current Profiles Across p-n Junctions, in Proceedings of the 16h European Solar Energy Conference, Glasgow UK, 2000, pp. 1590-1593.
Journal Article
W. G. Adams and Day, R. E., The Action of Light on Selenium, Proceedings of the Royal Society, London, vol. A25, p. 113, 1877.
A. Augusto, Herasimenka, S. Y., King, R. R., Bowden, S. G., and Honsberg, C., Analysis of the recombination mechanisms of a silicon solar cell with low bandgap-voltage offset, Journal of Applied Physics, vol. 121, no. 20, p. 205704, 2017.
A. Atanassov and Baleva, M., On the band diagram of Mg2Si/Si heterojunction as deduced from optical constants dispersions, Thin Solid Films, vol. 515, no. 5, pp. 3046 - 3051, 2007.
N. Sato, Ichimura, M., Arai, E., and Yamazaki, Y., Characterization of electrical properties and photosensitivity of SnS thin films prepared by the electrochemical deposition method, Solar Energy Materials and Solar Cells, vol. 85, no. 2, pp. 153 - 165, 2005.
M. Blanco-Muriel, Alarcón-Padilla, D. C., López-Moratalla, T., and Lara-Coira, M. Í., Computing the solar vector, Solar Energy, vol. 70, pp. 431 - 441, 2001.
M. Blanco-Muriel, Alarcón-Padilla, D. C., López-Moratalla, T., and Lara-Coira, M. Í., Computing the solar vector, Solar Energy, vol. 70, no. 5, pp. 431 - 441, 2001.
J. Schmidt, Kerr, M. J., and Altermatt, P. P., Coulomb-enhanced Auger recombination in crystalline silicon at intermediate and high injection densities, Journal of Applied Physics, vol. 88, pp. 1494-1497, 2000.
S. J. Robinson, Aberle, A. G., and Green, M. A., Departures from the principle of superposition in silicon solar cells, Journal of Applied Physics, vol. 76, p. 7920, 1994.
H. Katagiri et al., Development of CZTS-based thin film solar cells, Thin Solid Films, vol. 517, pp. 2455–2460, 2009.
H. KIDOWAKI, OKU, T., Akiyama, T., SUZUKI, A., JEYADEVAN, B., and Cuya, J., Fabrication and Characterization of CuO-based Solar Cells, Journal of Materials Science Research, vol. 1, no. 1, 2011.
O. Benhelal, Chahed, A., Laksari, S., Abbar, B., Bouhafs, B., and Aourag, H., First-principles calculations of the structural, electronic and optical properties of IIA-IV antifluorite compounds, physica status solidi (b), vol. 242, no. 10, pp. 2022 - 2032, 2005.
O. Benhelal, Chahed, A., Laksari, S., Abbar, B., Bouhafs, B., and Aourag, H., First-principles calculations of the structural, electronic and optical properties of IIA-IV antifluorite compounds, physica status solidi (b), vol. 242, no. 10, pp. 2022 - 2032, 2005.
H. Nagel, Berge, C., and Aberle, A. G., Generalized analysis of quasi-steady-state and quasi-transient measurements of carrier lifetimes in semiconductors, Journal of Applied Physics, vol. 86, pp. 6218-6221, 1999.
C. J. Hages, Carter, N. J., and Agrawal, R., Generalized quantum efficiency analysis for non-ideal solar cells: Case of Cu 2 ZnSnSe 4, Journal of Applied Physics, vol. 119, no. 1, p. 014505, 2016.
M. Aven, High Electron Mobility in Zinc Selenide Through Low-Temperature Annealing, Journal of Applied Physics, vol. 42, no. 3, p. 1204, 1971.
P. P. Altermatt, Sinton, R. A., and Heiser, G., Improvements in numerical modelling of highly injected crystalline silicon solar cells, Solar Energy Materials and Solar Cells, vol. 65, pp. 149-155(7), 2001.
A. Rockett et al., Na incorporation in Mo and CuInSe2 from production processes, Solar energy materials and solar cells, vol. 59, pp. 255–264, 1999.
S. Adachi and Taguchi, T., Optical properties of ZnSe, Physical Review B, vol. 43, no. 12, pp. 9569 - 9577, 1991.

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