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Suppression of thermal carrier escape and enhanced two-step photon absorption in quantum-dot intermediate-band solar cells with a high-potential barrier
Mapping Intimacies
◽
10.1117/12.2081302
◽
2015
◽
Author(s):
S. Asahi
◽
H. Teranishi
◽
N. Kasamatsu
◽
T. Kada
◽
T. Kaizu
◽
...
Keyword(s):
Solar Cells
◽
Quantum Dot
◽
Potential Barrier
◽
High Potential
◽
Photon Absorption
◽
Intermediate Band
◽
Intermediate Band Solar Cells
◽
High Potential Barrier
◽
Carrier Escape
Download Full-text
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Suppression of thermal carrier escape and efficient photo-carrier generation by two-step photon absorption in InAs quantum dot intermediate-band solar cells using a dot-in-well structure
Journal of Applied Physics
◽
10.1063/1.4892826
◽
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◽
Vol 116
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◽
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Carrier Generation
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Intermediate Band
◽
Intermediate Band Solar Cells
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◽
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Effect of electric field on carrier escape mechanisms in quantum dot intermediate band solar cells
Journal of Applied Physics
◽
10.1063/1.4972958
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2017
◽
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pp. 013101
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◽
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Solar Cells
◽
Quantum Dot
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Electric Field
◽
Intermediate Band
◽
Intermediate Band Solar Cells
◽
Carrier Escape
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Role of charge separation on two-step two photon absorption in InAs/GaAs quantum dot intermediate band solar cells
Applied Physics Letters
◽
10.1063/1.4941793
◽
2016
◽
Vol 108
(6)
◽
pp. 063901
◽
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Author(s):
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◽
V. Tasco
◽
A. Cola
◽
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◽
I. Tarantini
◽
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Solar Cells
◽
Quantum Dot
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Charge Separation
◽
Photon Absorption
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Intermediate Band
◽
Two Photon Absorption
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Two Photon
◽
Intermediate Band Solar Cells
◽
Gaas Quantum Dot
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Contribution to the Study of Sub-Bandgap Photon Absorption in Quantum Dot InAs/AlGaAs Intermediate Band Solar Cells
IEEE Journal of Photovoltaics
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10.1109/jphotov.2020.3043855
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2020
◽
pp. 1-9
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Juan Villa
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Jose Maria Ripalda
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Solar Cells
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Direct Observation of Two-Step Photon Absorption in an InAs/GaAs Single Quantum Dot for the Operation of Intermediate-Band Solar Cells
Nano Letters
◽
10.1021/acs.nanolett.5b00947
◽
2015
◽
Vol 15
(7)
◽
pp. 4483-4487
◽
Cited By ~ 23
Author(s):
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◽
Hiroyuki Takagi
◽
Katsuyuki Watanabe
◽
Yasuhiko Arakawa
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◽
Quantum Dot
◽
Direct Observation
◽
Photon Absorption
◽
Single Quantum
◽
Intermediate Band
◽
Intermediate Band Solar Cells
◽
Single Quantum Dot
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Modeling of type-II quantum dot intermediate band solar cells accounting for thermal and optical intersubband transitions
2018 International Conference on Numerical Simulation of Optoelectronic Devices (NUSOD)
◽
10.1109/nusod.2018.8570264
◽
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◽
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Author(s):
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◽
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Quantum Dot
◽
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◽
Intersubband Transitions
◽
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Quantum-dot intermediate-band solar cells with inverted band alignment
Physica E Low-dimensional Systems and Nanostructures
◽
10.1016/j.physe.2008.05.023
◽
2008
◽
Vol 41
(1)
◽
pp. 15-17
◽
Cited By ~ 6
Author(s):
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◽
S. Lany
◽
G. Bester
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Quantum Dot
◽
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◽
Intermediate Band
◽
Intermediate Band Solar Cells
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InAs/AlGaAs quantum dot intermediate band solar cells with enlarged sub-bandgaps
2012 38th IEEE Photovoltaic Specialists Conference
◽
10.1109/pvsc.2012.6317694
◽
2012
◽
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◽
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◽
M. J. Steer
◽
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Theoretical study of the effects of n-type doping in InAs/GaAs quantum dot layer on current–voltage characteristics of intermediate band solar cells
Japanese Journal of Applied Physics
◽
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◽
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◽
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◽
pp. 104002
Author(s):
Yong-Xian Gu
◽
Peng-Fei Xu
Keyword(s):
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Quantum Dot
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Quantum dot intermediate band solar cells: design criteria and optimal materials
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Intermediate Band
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Intermediate Band Solar Cells
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