Topological phase transition in compressed van der Waals superlattice heterostructure BiTeCl/HfTe 2

Based on first-principles calculations, we investigate the electronic band structures and topological properties of heterostructure BiTeCl/HfTe 2 under c -direction strain. In the primitive structure, this material undergoes a phase transition from an insulator with a narrow indirect gap to a metal...

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Veröffentlicht in:Chinese physics B 2024-07, Vol.33 (8), p.87102
Hauptverfasser: Li 李, Zhilei 志磊, Li 李, Yinxiang 殷翔, Wang 王, Yiting 奕婷, Chen 陈, Wenzhi 文执, Chen 陈, Bin 斌
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Sprache:eng
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Zusammenfassung:Based on first-principles calculations, we investigate the electronic band structures and topological properties of heterostructure BiTeCl/HfTe 2 under c -direction strain. In the primitive structure, this material undergoes a phase transition from an insulator with a narrow indirect gap to a metal by strong spin–orbital coupling. When strain effect is considered, band inversion at time-reversal invariant point Z is responsible for the topological phase transition. These nontrivial topologies are caused by two different types of band crossings. The observable topological surface states in (110) surface also support that this material experiences topological phase transition twice. The layered heterostructure with van der Waals force provides us with a new desirable platform upon which to control topological phase transition and construct topological superconductors.
ISSN:1674-1056
2058-3834
DOI:10.1088/1674-1056/ad462e