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    Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10259/8854

    Título
    Faraday rotation and transmittance as markers of topological phase transitions in 2D materials
    Autor
    Calixto, Manuel
    Mayorgas, Alberto
    Cordero Tejedor, Nicolás A.UBU authority Orcid
    Romera, Elvira
    Castaños Garza, Octavio Héctor
    Publicado en
    SciPost Physics. 2024, V. 16, n. 3, 077
    Editorial
    SciPost
    Fecha de publicación
    2024-03
    ISSN
    2542-4653
    DOI
    10.21468/SciPostPhys.16.3.077
    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.
    Materia
    Física
    Physics
    URI
    http://hdl.handle.net/10259/8854
    Versión del editor
    https://doi.org/10.21468/SciPostPhys.16.3.077
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    Calixto-SciPostPhysics_2024.pdf
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