Phonon-assisted cyclotron resonance in Pöschl-Teller quantum well

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Abstract

The phonon-assisted cyclotron-resonance (PACR) effect due to the one-photon (1P) and two-photon (2P) absorption processes in a quantum well (QW) with the Pöschl-Teller (PT) potential is studied. The magneto-optical absorption coefficient as functions of photon energy for different QW-parameters, magnetic fields, and temperatures is presented. The calculations are done for four different possible cases: Both 1P- A nd 2P-processes as well as both phonon emission and absorption processes. The numerical results for a GaAs, InAs, InSb, and GaSb PT-QW show that the PACR peaks are blueshifted with κ and magnetic field, redshifted with QW-length, but remained unchanged with temperature. Peak intensities are found to increase with κ and magnetic field and decrease with QW-length but have a complex dependency on the temperature. The full-width at half-maximum is found to increase with κ, magnetic field, and temperature but found to decrease with QW-length. The phonon emission process is always dominant in comparison with absorption. The 2P-process is comparable with the 1P-process and should be taken into account when studying the PACR in QWs.

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Pham, K. D., Tung, L. V., Thuan, D. V., Nguyen, C. V., Hieu, N. N., & Phuc, H. V. (2019). Phonon-assisted cyclotron resonance in Pöschl-Teller quantum well. Journal of Applied Physics, 126(12). https://doi.org/10.1063/1.5103187

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