Magnetostriction of metals with small Fermi-surface pockets: Case of the topologically trivial semimetal LuAs

Fuente: arXiv
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Main Authors: Sharlai, Yu. V., Bochenek, L., Juraszek, J., Cichorek, T., Mikitik, G. P.
Format: Preprint
Published: 2023
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author Sharlai, Yu. V.
Bochenek, L.
Juraszek, J.
Cichorek, T.
Mikitik, G. P.
author_facet Sharlai, Yu. V.
Bochenek, L.
Juraszek, J.
Cichorek, T.
Mikitik, G. P.
contents We develop a theory of the magnetostriction for metals with small charge-carrier pockets of their Fermi surfaces. As an example, we consider LuAs that has a cubic crystal structure. The theory quite well describes the known experimental data on the magnetostriction of this metal. The obtained results also clearly demonstrate that the dilatometry can be used for detecting tiny Fermi-surface pockets that are not discerned by traditional methods based on investigations of the Shubnikov--de Haas and de Haas--van Alphen effects.
format Preprint
id arxiv_https___arxiv_org_abs_2311_04768
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Magnetostriction of metals with small Fermi-surface pockets: Case of the topologically trivial semimetal LuAs
Sharlai, Yu. V.
Bochenek, L.
Juraszek, J.
Cichorek, T.
Mikitik, G. P.
Materials Science
We develop a theory of the magnetostriction for metals with small charge-carrier pockets of their Fermi surfaces. As an example, we consider LuAs that has a cubic crystal structure. The theory quite well describes the known experimental data on the magnetostriction of this metal. The obtained results also clearly demonstrate that the dilatometry can be used for detecting tiny Fermi-surface pockets that are not discerned by traditional methods based on investigations of the Shubnikov--de Haas and de Haas--van Alphen effects.
title Magnetostriction of metals with small Fermi-surface pockets: Case of the topologically trivial semimetal LuAs
topic Materials Science
url https://arxiv.org/abs/2311.04768