Ubiquitous spin freezing in the superconducting state of UTe2

Author:

Sundar ShyamORCID,Azari NasrinORCID,Goeks Mariah R.ORCID,Gheidi Shayan,Abedi Mae,Yakovlev Michael,Dunsiger Sarah R.,Wilkinson John M.ORCID,Blundell Stephen J.,Metz Tristin E.,Hayes Ian M.ORCID,Saha Shanta R.,Lee Sangyun,Woods Andrew J.,Movshovich Roman,Thomas Sean M.ORCID,Butch Nicholas P.ORCID,Rosa Priscila F. S.ORCID,Paglione JohnpierreORCID,Sonier Jeff E.ORCID

Abstract

AbstractIn most superconductors electrons form Cooper pairs in a spin-singlet state mediated by either phonons or by long-range interactions such as spin fluctuations. The superconductor UTe2 is a rare material wherein electrons are believed to form pairs in a unique spin-triplet state with potential topological properties. While spin-triplet pairing may be mediated by ferromagnetic or antiferromagnetic fluctuations, experimentally, the magnetic properties of UTe2 are unclear. By way of muon spin rotation/relaxation (μSR) measurements on independently grown UTe2 single crystals we demonstrate the existence of magnetic clusters that gradually freeze into a disordered spin frozen state at low temperatures. Our findings suggest that inhomogeneous freezing of magnetic clusters is linked to the ubiquitous residual linear term in the temperature dependence of the specific heat (C) and the low-temperature upturn in C/T versus T. The omnipresent magnetic inhomogeneity has potential implications for experiments aimed at establishing the intrinsic low-temperature properties of UTe2.

Funder

Gouvernement du Canada | Natural Sciences and Engineering Research Council of Canada

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy

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