Connecting High-Field and High-Pressure Superconductivity in UTe2

Fuente: arXiv
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Main Authors: Vasina, T., Aoki, D., Miyake, A., Seyfarth, G., Pourret, A., Marcenat, C., Patino, M. Amano, Lapertot, G., Flouquet, J., Brison, J. -P., Braithwaite, D., Knebel, G.
Format: Preprint
Published: 2024
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author Vasina, T.
Aoki, D.
Miyake, A.
Seyfarth, G.
Pourret, A.
Marcenat, C.
Patino, M. Amano
Lapertot, G.
Flouquet, J.
Brison, J. -P.
Braithwaite, D.
Knebel, G.
author_facet Vasina, T.
Aoki, D.
Miyake, A.
Seyfarth, G.
Pourret, A.
Marcenat, C.
Patino, M. Amano
Lapertot, G.
Flouquet, J.
Brison, J. -P.
Braithwaite, D.
Knebel, G.
contents The existence of multiple superconducting phases induced by either pressure or magnetic field is one of the most striking features of superconductivity of UTe$_2$, among the many unusual superconducting properties of this system. Here we report thermodynamic measurements of the superconducting phase diagram combining pressure and magnetic fields up to 30 T. We show that the ambient pressure, high-field, superconducting phase evolves continuously with pressure to join the high-pressure, zero-field superconducting phase. This proves that these two phases are one and the same, and must have the same order parameter.
format Preprint
id arxiv_https___arxiv_org_abs_2410_17733
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Connecting High-Field and High-Pressure Superconductivity in UTe2
Vasina, T.
Aoki, D.
Miyake, A.
Seyfarth, G.
Pourret, A.
Marcenat, C.
Patino, M. Amano
Lapertot, G.
Flouquet, J.
Brison, J. -P.
Braithwaite, D.
Knebel, G.
Strongly Correlated Electrons
Superconductivity
The existence of multiple superconducting phases induced by either pressure or magnetic field is one of the most striking features of superconductivity of UTe$_2$, among the many unusual superconducting properties of this system. Here we report thermodynamic measurements of the superconducting phase diagram combining pressure and magnetic fields up to 30 T. We show that the ambient pressure, high-field, superconducting phase evolves continuously with pressure to join the high-pressure, zero-field superconducting phase. This proves that these two phases are one and the same, and must have the same order parameter.
title Connecting High-Field and High-Pressure Superconductivity in UTe2
topic Strongly Correlated Electrons
Superconductivity
url https://arxiv.org/abs/2410.17733