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Topological materials discovery from crystal symmetry

Wieder, Benjamin J; Bradlyn, Barry; Cano, Jennifer; Wang, Zhijun; Vergniory, Maia G; Elcoro, Luis; Soluyanov, Alexey A; Felser, Claudia; Neupert, Titus; Regnault, Nicolas; Bernevig, B Andrei (2022). Topological materials discovery from crystal symmetry. Nature Reviews. Materials, 7(3):196-216.

Abstract

Topological materials discovery has evolved at a rapid pace over the past 15 years following the identification of the first nonmagnetic topological insulators (TIs), topological crystalline insulators (TCIs) and 3D topological semimetals (TSMs). Most recently, through complete analyses of symmetry-allowed band structures — including the theory of topological quantum chemistry (TQC) — researchers have determined crystal-symmetry-enhanced Wilson-loop and complete symmetry-based indicators for nonmagnetic topological phases, leading to the discovery of higher-order TCIs and TSMs. The recent application of TQC and related methods to high-throughput materials discovery has revealed that over half of the known stoichiometric, solid-state, nonmagnetic materials are topological at the Fermi level, over 85 per cent of the known stoichiometric materials host energetically isolated topological bands, and just under two-thirds of the energetically isolated bands in known materials carry the stable topology of a TI or TCI. In this Review, we survey topological electronic materials discovery in nonmagnetic crystalline solids from the prediction of the first 2D and 3D TIs to the recently introduced methods that have facilitated large-scale searches for topological materials. We also discuss future venues for the identification and manipulation of solid-state topological phases, including charge-density-wave compounds, magnetic materials, and 2D few-layer devices.

Additional indexing

Item Type:Journal Article, refereed, further contribution
Communities & Collections:07 Faculty of Science > Physics Institute
Dewey Decimal Classification:530 Physics
Scopus Subject Areas:Physical Sciences > Electronic, Optical and Magnetic Materials
Physical Sciences > Biomaterials
Physical Sciences > Energy (miscellaneous)
Physical Sciences > Surfaces, Coatings and Films
Physical Sciences > Materials Chemistry
Uncontrolled Keywords:Materials Chemistry, Surfaces, Coatings and Films, Energy (miscellaneous), Biomaterials, Electronic, Optical and Magnetic Materials
Language:English
Date:1 March 2022
Deposited On:23 Dec 2021 05:31
Last Modified:15 Mar 2025 04:43
Publisher:Nature Publishing Group
ISSN:2058-8437
OA Status:Closed
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1038/s41578-021-00380-2

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