Nizami Z. Vagidov
Affiliations: | 2001 | Wayne State University, Detroit, MI, United States |
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"Nizami Vagidov"Parents
Sign in to add mentorVladimir Mitin | grad student | 2001 | Wayne State | |
(Computer simulation of nonconventional nanoscale semiconductor devices.) |
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Publications
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Vagidov NZ, Montgomery KH, Bradshaw GK, et al. (2018) Light trapping structures for radiation hardness enhancement of space solar cells Solar Energy Materials and Solar Cells. 182: 136-141 |
Li Y, Sergeev A, Vagidov N, et al. (2015) Quantum Dot Solar Cells with Nanoscale Barriers Around Dots: Experiment and Two-Diode Model Analysis International Journal of High Speed Electronics and Systems. 24: 1520005 |
Sablon K, Li Y, Vagidov N, et al. (2015) GaAs quantum dot solar cell under concentrated radiation Applied Physics Letters. 107 |
Sablon KA, Sergeev A, Little JW, et al. (2014) Nanoscale optimization of quantum dot media for effective photovoltaic conversion Proceedings of Spie - the International Society For Optical Engineering. 9083 |
Sablon K, Little J, Vagidov N, et al. (2014) Conversion of above- and below-bandgap photons via InAs quantum dot media embedded into GaAs solar cell Applied Physics Letters. 104: 253904 |
Yakimov M, Sergeev A, Pogrebnyak V, et al. (2013) Engineering of absorbing medium for quantum dot infrared photodetectors Proceedings of Spie - the International Society For Optical Engineering. 8876 |
Mitin V, Choi JK, Thomain G, et al. (2013) Charge redistribution in adaptable quantum-dot and quantum-well nanomaterials for infrared sensing Proceedings of Spie - the International Society For Optical Engineering. 8725 |
Sablon K, Mitin V, Vagidov N, et al. (2013) Solar cell with charged quantum dots: optimization for high efficiency Proceedings of Spie. 8728 |
Mitin V, Sergeev A, Vagidov N, et al. (2013) Improvement of QDIP performance due to quantum dots with built-in charge Infrared Physics & Technology. 59: 84-88 |
Choi JK, Vagidov N, Sergeev A, et al. (2012) Asymmetrically Doped GaAs/AlGaAs Double-Quantum-Well Structure for Voltage-Tunable Infrared Detection Japanese Journal of Applied Physics. 51: 074004 |