Twisted bulk-boundary correspondence of fragile topology

Author:

Song Zhi-Da1ORCID,Elcoro Luis2ORCID,Bernevig B. Andrei134ORCID

Affiliation:

1. Department of Physics, Princeton University Princeton, NJ 08544, USA.

2. Department of Condensed Matter Physics, University of the Basque Country UPV/EHU, Apartado 644, 48080 Bilbao, Spain.

3. Physics Department, Freie Universitat Berlin Arnimallee 14, 14195 Berlin, Germany.

4. Max Planck Institute of Microstructure Physics, 06120 Halle, Germany.

Abstract

Understanding fragile topology Exploiting topological features in materials is being pursued as a route to build in robustness of particular properties. Stemming from crystalline symmetries, such topological protection renders the properties robust against defects and provides a platform of rich physics to be studied. Recent developments have revealed the existence of so-called fragile topological phases, where the means of classification due to symmetry is unclear. Z.-D. Song et al. and Peri et al. present a combined theoretical and experimental approach to identify, classify, and measure the properties of fragile topological phases. By invoking twisted boundary conditions, they are able to describe the properties of fragile topological states and verify the expected experimental signature in an acoustic crystal. Understanding how fragile topology arises could be used to develop new materials with exotic properties. Science , this issue p. 794 , p. 797

Funder

National Science Foundation

Office of Naval Research

David and Lucile Packard Foundation

U.S. Department of Energy

NSF-MRSEC

Government of the Basque Country

Simons Investigator

Guggenheim Fellowship

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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