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Magneto-optical effect in GaAs/GaAlAs semi-parabolic quantum well

Hien, N.D. and Duque, C.A. and Feddi, E. and Hieu, N.V. and Trien, H.D. and Phuong, L.T.T. and Hoi, B.D. and Hoa, L.T. and Nguyen, C.V. and Hieu, N.N. and Phuc, H.V. (2019) Magneto-optical effect in GaAs/GaAlAs semi-parabolic quantum well. Thin Solid Films, 682. pp. 10-17. ISSN 406090

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Abstract

We theoretically study the combined effect of Al-concentration, hydrostatic pressure, and temperature on the magneto-optical absorption properties of a semi-parabolic quantum well (SPQW)by investigating the magneto-optical absorption coefficient (MOAC)and the full-width at half-maximum (FWHM). The expression of MOAC is expressed by the second-order golden rule approximation where the electron–longitudinal-optical (LO)phonon interaction is taken into account while the FWHM is obtained from the profile of the curves. The numerical calculations are made for a typical GaAs/GaAlAs quantum well. Our results showed that the Al-concentration, hydrostatic pressure, and temperature affect the magneto-optical absorption properties strongly. Threshold energy and the resonant peaks are non-monotonic functions of the Al-concentration. Moreover, it has been revealed that the magneto-optical absorption properties of SPQW can be controlled by changing these parameters. © 2019 Elsevier B.V.

Item Type: Article
Divisions: Faculties > Faculty of Mechanical Engineering
Identification Number: 10.1016/j.tsf.2019.04.049
Uncontrolled Keywords: Full width at half maximum; Gallium arsenide; Hydraulics; Hydrostatic pressure; III-V semiconductors; Light absorption; Semiconducting gallium; Semiconductor quantum wells; Thermal effects; Al-concentration; Aluminum contents; Longitudinal optical phonons; Magnetooptical properties; Non-monotonic function; Numerical calculation; Semiparabolic quantum wells; Threshold energy; Optical properties
Additional Information: Language of original document: English.
URI: http://eprints.lqdtu.edu.vn/id/eprint/9287

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