How to identify and characterize strongly correlated topological semimetals

Fuente: arXiv
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Main Authors: Kirschbaum, Diana M., Lužnik, Monika, Roy, Gwenvredig Le, Paschen, Silke
Format: Preprint
Published: 2023
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_version_ 1866917738242375680
author Kirschbaum, Diana M.
Lužnik, Monika
Roy, Gwenvredig Le
Paschen, Silke
author_facet Kirschbaum, Diana M.
Lužnik, Monika
Roy, Gwenvredig Le
Paschen, Silke
contents How strong correlations and topology interplay is a topic of great current interest. In this perspective paper, we focus on correlation-driven gapless phases. We take the time-reversal symmetric Weyl semimetal as an example because it is expected to have clear (albeit nonquantized) topological signatures in the Hall response and because the first strongly correlated representative, the noncentrosymmetric Weyl-Kondo semimetal Ce$_3$Bi$_4$Pd$_3$, has recently been discovered. We summarize its key characteristics and use them to construct a prototype Weyl-Kondo semimetal temperature-magnetic field phase diagram. This allows for a substantiated assessment of other Weyl-Kondo semimetal candidate materials. We also put forward scaling plots of the intrinsic Berry-curvature-induced Hall response vs the inverse Weyl velocity -- a measure of correlation strength, and vs the inverse charge carrier concentration -- a measure of the proximity of Weyl nodes to the Fermi level. They suggest that the topological Hall response is maximized by strong correlations and small carrier concentrations. We hope that our work will guide the search for new Weyl-Kondo semimetals and correlated topological semimetals in general, and also trigger new theoretical work.
format Preprint
id arxiv_https___arxiv_org_abs_2308_11318
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle How to identify and characterize strongly correlated topological semimetals
Kirschbaum, Diana M.
Lužnik, Monika
Roy, Gwenvredig Le
Paschen, Silke
Strongly Correlated Electrons
How strong correlations and topology interplay is a topic of great current interest. In this perspective paper, we focus on correlation-driven gapless phases. We take the time-reversal symmetric Weyl semimetal as an example because it is expected to have clear (albeit nonquantized) topological signatures in the Hall response and because the first strongly correlated representative, the noncentrosymmetric Weyl-Kondo semimetal Ce$_3$Bi$_4$Pd$_3$, has recently been discovered. We summarize its key characteristics and use them to construct a prototype Weyl-Kondo semimetal temperature-magnetic field phase diagram. This allows for a substantiated assessment of other Weyl-Kondo semimetal candidate materials. We also put forward scaling plots of the intrinsic Berry-curvature-induced Hall response vs the inverse Weyl velocity -- a measure of correlation strength, and vs the inverse charge carrier concentration -- a measure of the proximity of Weyl nodes to the Fermi level. They suggest that the topological Hall response is maximized by strong correlations and small carrier concentrations. We hope that our work will guide the search for new Weyl-Kondo semimetals and correlated topological semimetals in general, and also trigger new theoretical work.
title How to identify and characterize strongly correlated topological semimetals
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2308.11318