Exceptional Topological Insulators
ORAL
Abstract
Since their theoretical conception and experimental discovery, 3-dimensional topological insulators (3D TIs) have become the focal point for research on topological quantum matter. Their key feature is a single Dirac electron on the surface, representing an anomaly: in purely 2D such a state can neither be regularized on a lattice nor in the continuum. In this work we search for a non-Hermitian analogue of the 3D TI: what could the anomalous non-Hermitian surface states be which necessitate a 3D topological bulk embedding? As an answer to this question, we introduce exceptional topological insulators (ETIs), a non-Hermitian topological state of matter that features exotic surface states. We show how this phase can evolve from a Weyl semimetal or Hermitian 3D TI close to the topological transition point when quasiparticles acquire a finite lifetime. The ETI does not require any symmetry to be stabilized. It is characterized by a bulk energy point gap and exhibits robust surface states that cover the bulk gap as a single sheet of complex eigenvalues or with a single exceptional point. The ETI can be induced universally in gapless solid-state systems, thereby setting a paradigm for non-Hermitian topological matter.
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Presenters
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Michael Denner
Univ of Zurich
Authors
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Michael Denner
Univ of Zurich
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Anastasiia Skurativska
Univ of Zurich
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Frank Schindler
Princeton University, University of Zurich
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Mark Fischer
Universität Zürich, Univ of Zurich, University of Zurich, Department of Physics, University of Zurich
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Ronny Thomale
Julius-Maximilians-Universität Würzburg, Institut für Theoretische Physik und Astrophysik, Universität Würzburg, Julius-Maximilians University of Wuerzburg, Wuerzburg University
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Tomas Bzdusek
Paul Scherrer Institute, Univ of Zurich
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Titus Neupert
University of Zurich, Universität Zürich, Department of Physics, University of Zurich, Univ of Zurich, Physics, University of Zurich