Anisotropic and tunable optical conductivity of a two-dimensional semi-Dirac system in the presence of elliptically polarized radiation

H. Y. Zhang, Y. M. Xiao, Q. N. Li, L. Ding, B. Van Duppen, W. Xu, and F. M. Peeters
Phys. Rev. B 105, 115423 – Published 22 March 2022

Abstract

We investigate the effect of ellipticity ratio of the polarized radiation field on optoelectronic properties of a two-dimensional (2D) semi-Dirac (SD) system. The optical conductivity is calculated within the energy balance equation approach derived from the semiclassical Boltzmann equation. We find that there exists the anisotropic optical absorption induced via both the intra- and interband electronic transition channels in the perpendicular xx and yy directions. Furthermore, we examine the effects of the ellipticity ratio, the temperature, the carrier density, and the band-gap parameter on the optical conductivity of the 2D SD system placed in transverse and vertical directions, respectively. It is shown that the ellipticity ratio, temperature, carrier density, and band-gap parameter can play the important roles in tuning the strength, peak position, and shape of the optical conductivity spectrum. The results obtained from this study indicate that the 2D SD system can be a promising anisotropic and tunable optical and optoelectronic material for applications in innovative 2D optical and optoelectronic devices, which are active in the infrared and terahertz bandwidths.

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  • Received 17 December 2021
  • Revised 11 March 2022
  • Accepted 15 March 2022

DOI:https://doi.org/10.1103/PhysRevB.105.115423

©2022 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

H. Y. Zhang1, Y. M. Xiao1,*, Q. N. Li1, L. Ding1, B. Van Duppen2, W. Xu3,1,4,†, and F. M. Peeters1,2

  • 1School of Physics and Astronomy and Yunnan Key Laboratory of Quantum Information, Yunnan University, Kunming 650091, China
  • 2Department of Physics, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerpen, Belgium
  • 3Micro Optical Instruments Inc., 518118 Shenzhen, China
  • 4Key Laboratory of Materials Physics, Institute of Solid State Physics, HFIPS, Chinese Academy of Sciences, Hefei 230031, China

  • *yiming.xiao@ynu.edu.cn
  • wenxu_issp@aliyun.com

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Vol. 105, Iss. 11 — 15 March 2022

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