Electron-magnon coupling and quasiparticle lifetimes on the surface of a topological insulator
ORAL
Abstract
The fermionic self-energy on the surface of a topological insulator proximity coupled to ferro- and antiferromagnetic insulators is studied. An enhanced electron-magnon coupling is achieved by allowing the electrons on the surface of the topological insulator to have a different exchange coupling to the two sublattices of the antiferromagnet. Such a system is therefore seen as superior to a ferromagnetic interface for the realization of magnon-mediated superconductivity. The increased electron-magnon-coupling simultaneously increases the self-energy effects. In this paper we show how the inverse quasiparticle lifetime and energy renormalization on the surface of the topological insulator can be kept low close to the Fermi level by using a magnetic insulator with a sufficient easy-axis anisotropy. We also consider a set of material and instrumental parameters where these self-energies should be measurable in angle-resolved photoemission spectroscopy experiments, paving the way for a measurement of the interfacial exchange coupling strength.
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Publication: Physical Review B 104, 125125.
Presenters
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Kristian Mæland
Norwegian University of Science and Technology
Authors
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Kristian Mæland
Norwegian University of Science and Technology
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Hâkon I Røst
Norwegian University of Science and Technology
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Justin W Wells
Norwegian University of Science and Technology
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Asle Sudbo
Norwegian University of Science and Technology