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Current-matching versus non-current-matching in long wavelength interband cascade infrared photodetectors
W. Huang, L. Lei, L. Li, J. A. Massengale, R. Q. Yang, T. D. Mishima, M. B. Santos, “Current-matching versus non-current-matching in long wavelength interband cascade infrared photodetectors”, J. Appl. Phys. 122 (8), 083102 (2017).
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Narrow-Bandgap Interband Cascade Thermophotovoltaic Cells
H. Lotfi, L. Li, L. Lei, R. Q. Yang, J. F. Klem and M. B. Johnson, “Narrow-Bandgap Interband Cascade Thermophotovoltaic Cells,” in IEEE Journal of Photovoltaics, vol. 7, no. 5, pp. 1462-1468, Sept. 2017, doi: 10.1109/JPHOTOV.2017.2713415.
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Long wavelength interband cascade infrared photodetectors operating at high temperatures
L. Lei, L. Li, H. Ye, H. Lotfi, R. Q. Yang, M. B. Johnson, J. A. Massengale, T. D. Mishima, M. B. Santos, “Long wavelength interband cascade infrared photodetectors operating at high temperatures,” J. Appl. Phys. 120, 193102 (2016).
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Monolithically integrated mid-IR interband cascade laser and photodetector operating at room temperature
H. Lotfi, L. Li, S.M S. Rassel, R. Q. Yang, C. J. Corrége, M. B. Johnson, P. R. Larson, and J. A. Gupta, “Monolithically integrated mid-IR interband cascade laser and photodetector operating at room temperature,” Appl. Phys. Lett. 109, 151111 (2016).
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Mid-wave interband cascade infrared photodetectors based on GaInAsSb absorbers
L. Lei, L. Li, H. Lotfi, Y. Jiang, R. Q. Yang, M. B. Johnson, D. Lubyshev, Y. Qiu, J. M. Fastenau, and A. W. K. Liu, “Mid-wave interband cascade infrared photodetectors based on GaInAsSb absorbers,” Semicond. Sci. Technol. 31, 105014 (2016).
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High-frequency operation of a mid-infrared interband cascade system at room temperature
H. Lotfi, L. Li, L. Lei, H. Ye, S. M. S. Rassel, Y. Jiang, R. Q. Yang, T. D. Mishima, M. B. Santos, J. A. Gupta, and M. B. Johnson, “High-frequency operation of a mid-infrared interband cascade system at room temperature,” Appl. Phys. Lett., 108, 201101 (2016).
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Short-wavelength interband cascade infrared photodetectors operating above room temperature
H. Lotfi, L. Li, L. Lei, R. Q. Yang, J. F. Klem, M. B. Johnson, “Short-wavelength interband cascade infrared photodetectors operating above room temperature,” J. Appl. Phys. 119, 023105 (2016).
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InAs-based quantum cascade lasers with enhanced confinement
R. Q. Yang, “InAs-based quantum cascade lasers with enhanced confinement”, Semicond. Sci. Technol, 30, 105023 (2015).
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InAs-Based Single-Mode Distributed Feedback Interband Cascade Lasers
Y. Jiang, L. Li, H. Ye, R. Q. Yang, T. D. Mishima, M.B. Santos, M. B. Johnson, D. J.-Y. Feng, and F.-S. Choa, “InAs-Based Single-Mode Distributed Feedback Interband Cascade Lasers,” IEEE J. Quantum Electron. 51, 2300307 (2015).
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Molecular beam epitaxy of interband cascade structures with InAs/GaSb superlattice absorbers for long-wavelength infrared detection
H. Ye, L. Li, H. Lotfi, L. Lei, R. Q. Yang, J. C. Keay, T. D. Mishima, M.B. Santos, and M. B. Johnson, “Molecular beam epitaxy of interband cascade structures with InAs/GaSb superlattice absorbers for long-wavelength infrared detection,” Semicond. Sci. Technol. 30, 105029 (2015).