Fermi surface evolution in Weyl semimetal t-PtBi$_2$ probed by transverse transport properties

Fuente: arXiv
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Main Authors: Caglieris, F., Ceccardi, M., Efremov, D., Shipunov, G., Kovalchuk, I., Aswartham, S., Veyrat, A., Dufouleur, J., Marré, D., Büchner, B., Hess, C.
Format: Preprint
Published: 2025
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author Caglieris, F.
Ceccardi, M.
Efremov, D.
Shipunov, G.
Kovalchuk, I.
Aswartham, S.
Veyrat, A.
Dufouleur, J.
Marré, D.
Büchner, B.
Hess, C.
author_facet Caglieris, F.
Ceccardi, M.
Efremov, D.
Shipunov, G.
Kovalchuk, I.
Aswartham, S.
Veyrat, A.
Dufouleur, J.
Marré, D.
Büchner, B.
Hess, C.
contents The combination of non-trivial topology and superconductivity opens to novel quantum devices. The discovery of intrinsic materials where such properties appear together represents a frontier in modern condensed matter physics. Trigonal PtBi$_2$ has recently emerged as a possible candidate, being the first example of superconducting type-I Weyl semimetal. However, several aspects of this promising compound still need to be unveiled, concerning its complicated band structure, the actual role of Weyl points in determining its electronic properties and the nature of the superconducting transition. In this work, we experimentally investigated a t-PtBi$_2$ single crystal by means of the Hall and Nernst effects. In particular, we revealed a change of regime in its electronic properties, which is compatible with a temperature and magnetic field evolution of hole-like pockets in the Fermi Surface.
format Preprint
id arxiv_https___arxiv_org_abs_2504_13661
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Fermi surface evolution in Weyl semimetal t-PtBi$_2$ probed by transverse transport properties
Caglieris, F.
Ceccardi, M.
Efremov, D.
Shipunov, G.
Kovalchuk, I.
Aswartham, S.
Veyrat, A.
Dufouleur, J.
Marré, D.
Büchner, B.
Hess, C.
Superconductivity
The combination of non-trivial topology and superconductivity opens to novel quantum devices. The discovery of intrinsic materials where such properties appear together represents a frontier in modern condensed matter physics. Trigonal PtBi$_2$ has recently emerged as a possible candidate, being the first example of superconducting type-I Weyl semimetal. However, several aspects of this promising compound still need to be unveiled, concerning its complicated band structure, the actual role of Weyl points in determining its electronic properties and the nature of the superconducting transition. In this work, we experimentally investigated a t-PtBi$_2$ single crystal by means of the Hall and Nernst effects. In particular, we revealed a change of regime in its electronic properties, which is compatible with a temperature and magnetic field evolution of hole-like pockets in the Fermi Surface.
title Fermi surface evolution in Weyl semimetal t-PtBi$_2$ probed by transverse transport properties
topic Superconductivity
url https://arxiv.org/abs/2504.13661