Impact of Well Number on High-Efficiency Strain-Balanced Quantum-Well Solar Cells
Author:
Affiliation:
1. Magnolia Optical Technologies, Inc., Woburn, MA, USA
2. NanoPower Research Laboratories, Rochester Institute of Technology, Rochester, NY, USA
Funder
U.S. Government
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Link
http://xplorestaging.ieee.org/ielx7/5503869/10015785/09935804.pdf?arnumber=9935804
Reference27 articles.
1. Enhanced external radiative efficiency for 20.8% efficient single-junction GaInP solar cells
2. Photovoltaics education website;honsberg,2019
3. Observation of photon recycling in strain-balanced quantum well solar cells
4. On the dimensionality of optical absorption, gain, and recombination in quantum-confined structures
5. Electron radiation-induced degradation of GaAs solar cells with different architectures;gruginskie;Prog Photovolt Res Appl,2019
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1. Boosting quantum-structured solar cell light absorption through compressively strained superlattices;Japanese Journal of Applied Physics;2024-07-01
2. Improvement of radiation resistance of GaInP/GaInAs/Ge triple-junction solar cell with GaInAs/GaAsP quantum wells;Japanese Journal of Applied Physics;2023-12-21
3. AM0 Optimized Dual Junction Quantum Well Solar Cells-Investigation of Radiation Tolerance Designs and Voc Retention at EOL;2023 IEEE 50th Photovoltaic Specialists Conference (PVSC);2023-06-11
4. Demonstration of Dual-Junction ELO Solar Cells with Strain-Balanced and Lattice-Matched Quantum Well Absorbers;2023 IEEE 50th Photovoltaic Specialists Conference (PVSC);2023-06-11
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