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Quasi-localization and Wannier obstruction in partially flat bandsoa mark
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Publication Year
2024-12-01
Publisher
Nature Research
Citation
Communications Physics, Vol.7
Mesh Keyword
Bloch wave functionsEigenstatesFlat bandLinear combinationsLocalisationLocalisedLocalization propertiesLocalized stateSurface modesWannier
All Science Classification Codes (ASJC)
Physics and Astronomy (all)
Abstract
The localized nature of a flat band is understood by the existence of a compact localized eigenstate. However, the localization properties of a partially flat band, ubiquitous in surface modes of topological semimetals, have been unknown. We show that the partially flat band is characterized by a non-normalizable quasi-compact localized state (Q-CLS), which is compactly localized along several directions but extended in at least one direction. The partially flat band develops at momenta where normalizable Bloch wave functions can be obtained from a linear combination of the non-normalizable Q-CLSs. Outside this momentum region, a ghost flat band, unseen from the band structure, is introduced based on a counting argument. Then, we demonstrate that the Wannier function corresponding to the partially flat band exhibits an algebraic decay behavior. Namely, one can have the Wannier obstruction in a band with a vanishing Chern number if it is partially flat. Finally, we develop the construction scheme of a tight-binding model for a topological semimetal by designing a Q-CLS.
ISSN
2399-3650
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/34250
DOI
https://doi.org/10.1038/s42005-024-01679-6
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Type
Article
Funding
We are funded by the National Research Foundation of Korea(NRF) Grant funded by the Korean government (MSIT) (Grant Nos. 2021R1A2C1010572, 2022M3H3A106307411, and 2021R1A5A1032996) and the Ministry of Education (Grant no. RS-2023-00285390).
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Rhim, Jun Won 임준원
Department of Physics
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