The bulk-corner correspondence of time-reversal symmetric insulators

Publication date

2021-01-04

Authors

Kooi, S. H.ISNI 0000000493300984
Miert, Guido vanISNI 0000000527843574
Ortix, CarmineISNI 0000000352785682

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Article
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Abstract

The topology of insulators is usually revealed through the presence of gapless boundary modes: this is the so-called bulk-boundary correspondence. However, the many-body wavefunction of a crystalline insulator is endowed with additional topological properties that do not yield surface spectral features, but manifest themselves as (fractional) quantized electronic charges localized at the crystal boundaries. Here, we formulate such bulk-corner correspondence for the physical relevant case of materials with time-reversal symmetry and spin-orbit coupling. To do so we develop partial real-space invariants that can be neither expressed in terms of Berry phases nor using symmetry-based indicators. These previously unknown crystalline invariants govern the (fractional) quantized corner charges both of isolated material structures and of heterostructures without gapless interface modes. We also show that the partial real-space invariants are able to detect all time-reversal symmetric topological phases of the recently discovered fragile type.

Keywords

Electronic, Optical and Magnetic Materials, Condensed Matter Physics

Citation

Kooi, S, van Miert, G & Ortix, C 2021, 'The bulk-corner correspondence of time-reversal symmetric insulators', npj Quantum Materials, vol. 6, 1. https://doi.org/10.1038/s41535-020-00300-7