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Electrically widely tunable interband cascade lasers
20. Y. Jiang, L. Li, Z. Tian, H. Ye, L. Zhao, R. Q. Yang, T. D. Mishima, M. B. Santos, M. B. Johnson, and K. Mansour “Electrically widely tunable interband cascade lasers”, J. Appl. Phys. 115, 113101 (2014).
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Multistage interband cascade photovoltaic devices with a bandgap of ~0.23 eV operating above room temperature
H. Ye, H. Lotfi, L. Li, R. T. Hinkey, R. Q. Yang, L. Lei, J. C. Keay, M. B. Johnson, T.D. Mishima, and M. B. Santos, “Multistage interband cascade photovoltaic devices with a bandgap of ~0.23 eV operating above room temperature” Chinese Science Bulletin 59, 950-955 (2014).
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Theory of Multiple-Stage Interband Photovoltaic Devices and Ultimate Performance Limit Comparison of Multiple-Stage and Single-Stage Interband Infrared Detectors
R. T. Hinkey, R. Q. Yang, “Theory of Multiple-Stage Interband Photovoltaic Devices and Ultimate Performance Limit Comparison of Multiple-Stage and Single-Stage Interband Infrared Detectors”, J. Appl. Phys. 114, 104506 (2013).
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Narrow-Bandgap Photovoltaic Devices Operating at Room Temperature and Above with High Open-Circuit Voltage
H. Lotfi, R. T. Hinkey, L. Li, R. Q. Yang, J. F. Klem, and M. B. Johnson, “Narrow-Bandgap Photovoltaic Devices Operating at Room Temperature and Above with High Open-Circuit Voltage”, Appl. Phys. Lett, 102, 211103 (2013).
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MBE growth optimization of InAs (001) homoepitaxy
H. Ye, L. Li, R. T. Hinkey, R. Q. Yang, T. D. Mishima, J. C. Keay, M. B. Santos, and M. B. Johnson, “MBE growth optimization of InAs (001) homoepitaxy”, J. Vac. Sci. Technol. B 31 (3), 03C135 (2013).
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Interband Cascade Photovoltaic Devices for Conversion of Mid-IR Radiation
R. T. Hinkey, Z. Tian, S.M. S. Rassel, R. Q. Yang, J. F. Klem, and M. B. Johnson, “Interband Cascade Photovoltaic Devices for Conversion of Mid-IR Radiation”, IEEE J. Photovoltaics, 3, 745 (2013).
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Single-waveguide dual-wavelength interband cascade lasers
L. Li, L. Zhao, Y. Jiang, R. Q. Yang, J. C. Keay, T. D. Mishima, M. B. Santos, and M. B. Johnson, “Single-waveguide dual-wavelength interband cascade lasers”, Appl. Phys. Lett. 101, 171118 (2012).
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InAs-based interband cascade lasers near 5.3 µm
Z. Tian, Y. Jiang, L. Li, R. T. Hinkey, Z. Yin, R. Q. Yang, T. D. Mishima, M. B. Santos, and M. B. Johnson, “InAs-based interband cascade lasers near 5.3 µm”, IEEE J. Quantum Electron 48, 915 (2012).
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InAs-based interband cascade lasers with emission wavelength at 10.4 µm
Z. Tian, L. Li, Y. Hao, R. Q. Yang, T. D. Mishima, M. B. Santos, and M. B. Johnson, “InAs-based interband cascade lasers with emission wavelength at 10.4 µm”, Electronics Lett. 48, 113 (2012).
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Interband Cascade Infrared Photodetectors with enhanced electron barriers and p-type superlattice absorbers
Z. Tian, R. T. Hinkey, R. Q. Yang, D. Lubyshev, Y. Qiu, J. M. Fastenau, W. K. Liu, M. B. Johnson, “Interband Cascade Infrared Photodetectors with enhanced electron barriers and p-type superlattice absorbers”, J. Appl. Phys. 111, 024510 (2012).