Edge States of an Excitonic Insulator with the Spin—Orbit Interaction

The effect of the spin-orbit and Coulomb interactions on the symmetry and topological properties of the s, p, d , and s + d phases of an excitonic insulator has been considered by example of the inverted two-band structure of the HgTe quantum well. It has been found that only the p phase has a nontr...

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Veröffentlicht in:JETP letters 2020-06, Vol.111 (11), p.647-652
1. Verfasser: Val’kov, V. V.
Format: Artikel
Sprache:eng
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Zusammenfassung:The effect of the spin-orbit and Coulomb interactions on the symmetry and topological properties of the s, p, d , and s + d phases of an excitonic insulator has been considered by example of the inverted two-band structure of the HgTe quantum well. It has been found that only the p phase has a nontrivial topology, but it is metastable. It has been shown that the exchange interaction between fermions induces the ground state with the s + d symmetry of the excitonic order parameter. This phase of the excitonic insulator has zero Chern number; nevertheless, edge states occur in the case of open boundaries.
ISSN:0021-3640
1090-6487
DOI:10.1134/S0021364020110107