Finite temperature fluctuation-induced order and responses in magnetic topological insulators

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Abstract

We derive an effective field theory model for magnetic topological insulators and predict that a magnetic electronic gap persists on the surface for temperatures above the ordering temperature of the bulk. Our analysis also applies to interfaces of heterostructures consisting of a ferromagnetic and a topological insulator. In order to make quantitative predictions for  and for EuS- heterostructures, we combine the effective field theory method with density functional theory and Monte Carlo simulations. For we predict an upwards Néel temperature shift at the surface up to , while the EuS- interface exhibits a smaller relative shift. The effective theory also predicts induced Dzyaloshinskii-Moriya interactions and a topological magnetoelectric effect, both of which feature a finite temperature and chemical potential dependence.

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Scholten, M., Facio, J. I., Ray, R., Eremin, I. M., van den Brink, J., & Nogueira, F. S. (2021). Finite temperature fluctuation-induced order and responses in magnetic topological insulators. Physical Review Research, 3(3). https://doi.org/10.1103/PhysRevResearch.3.L032014

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