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Electronic structures and stability investigation of the new class of large band gap topological insulators MTl4_4Te3_3 (M = Cd, Hg)

Published 27 May 2022 in cond-mat.mtrl-sci | (2205.13749v2)

Abstract: By means of ternary chemical potential phase diagram and phonon spectrum calculations, we propose that MMTl4_4Te3_3 (MM = Cd, Hg), the derivatives of Tl5_5Te3_3, are thermodynamically and dynamically stable in the body centered tetragonal crystal structure with II4/mcmmcm symmetry. Our electronic structures calculations confirm that a robust ss-pp band inversion occurs near the Fermi level in MMTl4_4Te3_3, and a topological band gap about 0.13 eV in CdTl4_4Te3_3 is induced by the spin-orbit coupling. These results suggest that MMTl4_4Te3_3 are a new class of large band gap 3D strong topological insulators that are stable and synthesizable in experiments, which could be used to design efficient spin torque equipment and spin device.

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