Connecting the avoided quantum critical point to the magic-angle transition in three-dimensional Weyl semimetals

Fuente: arXiv
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Main Authors: Pixley, J. H., Huse, David A., Wilson, Justin H.
Format: Preprint
Published: 2023
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author Pixley, J. H.
Huse, David A.
Wilson, Justin H.
author_facet Pixley, J. H.
Huse, David A.
Wilson, Justin H.
contents We theoretically study the interplay of short-ranged random and quasiperiodic static potentials on the low-energy properties of three-dimensional Weyl semimetals. This setting allows us to investigate the connection between the semimetal to diffusive metal "magic-angle" phase transition due to quasiperiodicity and the rare-region induced crossover at an avoided quantum critical point (AQCP) due to disorder. We show that in the presence of both random and quasiperiodic potentials the AQCP becomes lines of crossovers, which terminate at magic-angle critical points in the quasiperiodic, disorder-free limit. We analyze the magic-angle transition by approaching it along these lines of avoided transitions, which unveils a rich miniband structure and several AQCPs. These effects can be witnessed in cold-atomic experiments through potential engineering on semimetallic band structures.
format Preprint
id arxiv_https___arxiv_org_abs_2310_19876
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Connecting the avoided quantum critical point to the magic-angle transition in three-dimensional Weyl semimetals
Pixley, J. H.
Huse, David A.
Wilson, Justin H.
Disordered Systems and Neural Networks
Quantum Gases
Strongly Correlated Electrons
We theoretically study the interplay of short-ranged random and quasiperiodic static potentials on the low-energy properties of three-dimensional Weyl semimetals. This setting allows us to investigate the connection between the semimetal to diffusive metal "magic-angle" phase transition due to quasiperiodicity and the rare-region induced crossover at an avoided quantum critical point (AQCP) due to disorder. We show that in the presence of both random and quasiperiodic potentials the AQCP becomes lines of crossovers, which terminate at magic-angle critical points in the quasiperiodic, disorder-free limit. We analyze the magic-angle transition by approaching it along these lines of avoided transitions, which unveils a rich miniband structure and several AQCPs. These effects can be witnessed in cold-atomic experiments through potential engineering on semimetallic band structures.
title Connecting the avoided quantum critical point to the magic-angle transition in three-dimensional Weyl semimetals
topic Disordered Systems and Neural Networks
Quantum Gases
Strongly Correlated Electrons
url https://arxiv.org/abs/2310.19876