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  2D Theoretically Twistable Material Database

Jiang, Y., Petralanda, U., Skorupskii, G., Xu, Q., Pi, H., Călugăru, D., et al. (2024). 2D Theoretically Twistable Material Database.

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2411.09741.pdf (Preprint), 26MB
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2411.09741.pdf
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File downloaded from arXiv at 2024-11-20
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2024
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externe Referenz:
https://arxiv.org/abs/2411.09741 (Preprint)
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 Urheber:
Jiang, Y.1, Autor
Petralanda, U.1, Autor
Skorupskii, G.1, Autor
Xu, Q.1, Autor
Pi, H.1, Autor
Călugăru, D.1, Autor
Hu, H.1, Autor
Xie, J.1, Autor
Mustaf, R. A.1, Autor
Höhn, P.1, Autor
Haase, V.1, Autor
Vergniory, M. G.1, Autor
Claassen, M.1, Autor
Elcoro, L.1, Autor
Regnault, N.1, Autor
Shan, J.1, Autor
Mak, K. F.1, Autor
Efetov, D. K.1, Autor
Morosan, E.1, Autor
Kennes, D. M.2, 3, Autor           
Rubio, A.3, 4, 5, Autor           Xian, L. D.3, 6, 7, Autor           Felser, C.1, AutorSchoop, L. M.1, AutorBernevig, B. A.1, Autor mehr..
Affiliations:
1external, ou_persistent22              
2Institut für Theorie der Statistischen Physik, RWTH Aachen University and JARA-Fundamentals of Future Information Technology, ou_persistent22              
3Theory Group, Theory Department, Max Planck Institute for the Structure and Dynamics of Matter, Max Planck Society, ou_2266715              
4Center for Computational Quantum Physics, Flatiron Institute, ou_persistent22              
5Nano-Bio Spectroscopy Group and ETSF, Universidad del País Vasco UPV/EHU, ou_persistent22              
6Tsientang Institute for Advanced Study, ou_persistent22              
7Songshan-Lake Materials Laboratory, Dongguan, ou_persistent22              

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Schlagwörter: Condensed Matter, Materials Science, cond-mat.mtrl-sci, Condensed Matter, Mesoscale and Nanoscale Physics, cond-mat.mes-hall
 Zusammenfassung: The study of twisted two-dimensional (2D) materials, where twisting layers create moiré superlattices, has opened new opportunities for investigating topological phases and strongly correlated physics. While systems such as twisted bilayer graphene (TBG) and twisted transition metal dichalcogenides (TMDs) have been extensively studied, the broader potential of a seemingly infinite set of other twistable 2D materials remains largely unexplored. In this paper, we define "theoretically twistable materials" as single- or multi-layer structures that allow for the construction of simple continuum models of their moiré structures. This excludes, for example, materials with a "spaghetti" of bands or those with numerous crossing points at the Fermi level, for which theoretical moiré modeling is unfeasible. We present a high-throughput algorithm that systematically searches for theoretically twistable semimetals and insulators based on the Topological 2D Materials Database. By analyzing key electronic properties, we identify thousands of new candidate materials that could host rich topological and strongly correlated phenomena when twisted. We propose representative twistable materials for realizing different types of moiré systems, including materials with different Bravais lattices, valleys, and strength of spin-orbital coupling. We provide examples of crystal growth for several of these materials and showcase twisted bilayer band structures along with simplified twisted continuum models. Our results significantly broaden the scope of moiré heterostructures and provide a valuable resource for future experimental and theoretical studies on novel moiré systems.

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Sprache(n): eng - English
 Datum: 2024-11-14
 Publikationsstatus: Online veröffentlicht
 Seiten: 96
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: Keine Begutachtung
 Identifikatoren: arXiv: 2411.09741
 Art des Abschluß: -

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