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Reentrant superconductivity enabled by spin-orbit coupling: Application to UTe₂
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Reentrant superconductivity enabled by spin-orbit coupling: Application to UTe₂

Changhee Lee, Nico A Hackner, Daniel F Agterberg and P. M. R Brydon
ArXiv.org
Cornell University
22/06/2026
Handle:
https://hdl.handle.net/10523/51558

Abstract

Physics - Superconductivity
Reentrant superconductivity has been understood primarily in terms of the Jaccarino-Peter field-compensation effect or from a change of the strength in the pairing interaction. However, neither mechanism appears able to entirely explain the remarkable phase diagram of UTe₂. Here we propose a generic theory of the field-enhancement of opposite-spin Cooper pairings which does not necessitate the coexistence of magnetism or the vicinity of a magnetic quantum critical point. Our analytical treatment shows that the reentrance has its origin in the interplay of the sublattice degrees of freedom and spin-orbit coupling, which can can strikingly enhance opposite-spin Cooper pairings at strong Zeeman fields. Based on these results, we show that a pairing state with B ₃ᵤsymmetry can reproduce the highly anisotropic phase diagram of the reentrant superconducting state of UTe₂.
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2606.23638v12.60 MBDownloadView
Preprint (Author's original) v1 Open Access CC BY-SA V4.0
url
https://doi.org/10.48550/arXiv.2606.23638View
Preprint (Author's original) Open CC BY-SA V4.0

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