Tytuł pozycji:
Topological states in superlattices of HgTe class of materials for engineering three-dimensional flat bands
- Tytuł:
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Topological states in superlattices of HgTe class of materials for engineering three-dimensional flat bands
- Autorzy:
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Islam, Rajibul
Singh, Bahadur
Autieri, Carmine
Dietl, Tomasz
Bansil, Arun
Agarwal, Amit
Ghosh, Barun
Cuono, Giuseppe
Lau, Alexander
Brzezicki, Wojciech
- Data publikacji:
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2022
- Język:
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angielski
- Prawa:
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http://creativecommons.org/licenses/by/4.0/legalcode.pl
Udzielam licencji. Uznanie autorstwa 4.0 Międzynarodowa
- Dostawca treści:
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Repozytorium Uniwersytetu Jagiellońskiego
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In search of materials with three-dimensional flat band dispersions, using ab initio computations we investigate how topological phases evolve as a function of hydrostatic pressure and uniaxial strain in two types of superlattices: HgTe/CdTe and HgTe/HgSe. In short-period HgTe/CdTe superlattices, our analysis unveils the presence of isoenergetic nodal lines, which could host strain-induced three-dimensional flat bands at the Fermi level without requiring doping, when fabricated, for instance, as core-shell nanowires. In contrast, HgTe/HgSe short-period superlattices are found to harbor a rich phase diagram with a plethora of topological phases. Notably, the unstrained superlattice realizes an ideal Weyl semimetal with Weyl points situated at the Fermi level. A small-gap topological insulator with multiple band inversions can be obtained by tuning the volume: under compressive uniaxial strain, the material transitions sequentially into a Dirac semimetal to a nodal-line semimetal, and finally into a topological insulator with a single band inversion.