paper

Optical study of the charge dynamics evolution in the topological insulators MnBiTe and Mn(BiSb)Te under high pressure

arXiv:2405.15283 · doi:10.1103/PhysRevB.109.245124

Abstract

The van der Waals material MnBiTe and the related Sb-substituted compounds Mn(BiSb)Te are prominent members of the family of magnetic topological insulators, in which rare quantum mechanical states can be realized. In this work, we study the evolution of the charge dynamics in MnBiTe and the Sb-substituted compound Mn(BiSb)Te with under hydrostatic pressure. For MnBiTe, the pressure dependence of the screened plasma frequency, the dc conductivity, and the reflectance at selected frequencies shows weak anomalies at 2 and 4~GPa, which might be related to an electronic phase transition driven by the enhanced interlayer interaction. We observe a pressure-induced decrease in the optical gap, consistent with the decrease in and closing of the energy gap reported in the literature. Both studied materials show an unusual decrease in the low-energy optical conductivity under pressure, which we attribute to a decreasing spectral weight of the Drude terms describing the free charge carrier excitations. Our results suggest a localization of conduction electrons under pressure, possibly due to hybridization effects.

9 pages, 3 figures; accepted for publication in Phys. Rev. B