Faraday rotation and transmittance as markers of topological phase transitions in 2D materials

Author:

Calixto Manuel1ORCID,Mayorgas Alberto1ORCID,Cordero Nicolás A.21ORCID,Romera Elvira1,Castaños Garza Octavio Héctor3ORCID

Affiliation:

1. University of Granada

2. University of Burgos

3. National Autonomous University of Mexico

Abstract

We analyze the magneto-optical conductivity (and related magnitudes like transmittance and Faraday rotation of the irradiated polarized light) of some elemental two-dimensional Dirac materials of group IV (graphene analogues, buckled honeycomb lattices, like silicene, germanene, stannane, etc.), group V (phosphorene), and zincblende heterostructures (like HgTe/CdTe quantum wells) near the Dirac and gamma points, under out-of-plane magnetic and electric fields, to characterize topological-band insulator phase transitions and their critical points. We provide plots of the Faraday angle and transmittance as a function of the polarized light frequency, for different external electric and magnetic fields, chemical potential, HgTe layer thickness and temperature, to tune the material magneto-optical properties. We have shown that absortance/transmittance acquires extremal values at the critical point, where the Faraday angle changes sign, thus providing fine markers of the topological phase transition. In the case of non-topological materials as phosphorene, a minimum of the transmittance is also observed due to the energy gap closing by an external electric field.

Funder

Consejería de Economía, Innovación, Ciencia y Empleo, Junta de Andalucía

Ministerio de Ciencia e Innovación

Universidad Nacional Autónoma de México

Publisher

Stichting SciPost

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