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One- and two-photon-induced magneto-optical properties of hyperbolic-type quantum wells

Hien, N.D. and Thuan, D.V. and Duque, C.A. and Feddi, E. and Dujardin, F. and Phuong, L.T.T. and Hoi, B.D. and Nguyen, C.V. and Tu, L.T.N. and Phuc, H.V. and Hieu, N.N. (2019) One- and two-photon-induced magneto-optical properties of hyperbolic-type quantum wells. Optik, 185. pp. 1261-1269. ISSN 304026

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Abstract

We investigate the combined effects of hydrostatic pressure, Al-concentration, temperature, and well-width parameter on the magneto-optical absorption properties (MOAPs)of a hyperbolic-type quantum well (HTQW). The results covered all possible processes: both phonon absorption and emission as well as both one- and two-photon. Our results show that the MOAPs of the HTQW significantly depend on the pressure, the Al-concentration, the temperature, and the well-width. We also suggest two new expressions for the dependence of the full-width at half-maximum on the pressure and concentration which need an experimental study to evaluate their validity. Our study provides a systematic results of the combined effects of pressure, Al-concentration, temperature, electron-phonon scattering, and the two-photon absorption on the nonlinear optical properties of such two-dimensional semiconductors, which would be useful for the applications in photonic devices. © 2019 Elsevier GmbH

Item Type: Article
Divisions: Faculties > Faculty of Mechanical Engineering
Identification Number: 10.1016/j.ijleo.2019.03.151
Uncontrolled Keywords: Hydraulics; Hydrostatic pressure; Light absorption; Nonlinear optics; Optical properties; Phonons; Photonic devices; Photons; Semiconductor quantum wells; Temperature; Al-concentration; Combined effect; Electron phonon scattering; Magnetooptical properties; Non-linear optical properties; Phonon absorption; Two photon absorption; Two-dimensional semiconductors; Two photon processes
Additional Information: Language of original document: English.
URI: http://eprints.lqdtu.edu.vn/id/eprint/9338

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