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Ubiquitous spin freezing in the superconducting state of UTe2.

Authors :
Sundar, Shyam
Azari, Nasrin
Goeks, Mariah R.
Gheidi, Shayan
Abedi, Mae
Yakovlev, Michael
Dunsiger, Sarah R.
Wilkinson, John M.
Blundell, Stephen J.
Metz, Tristin E.
Hayes, Ian M.
Saha, Shanta R.
Lee, Sangyun
Woods, Andrew J.
Movshovich, Roman
Thomas, Sean M.
Butch, Nicholas P.
Rosa, Priscila F. S.
Paglione, Johnpierre
Sonier, Jeff E.
Source :
Communications Physics; 2/1/2023, Vol. 6 Issue 1, p1-11, 11p
Publication Year :
2023

Abstract

In 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 UTe<subscript>2</subscript> 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 UTe<subscript>2</subscript> are unclear. By way of muon spin rotation/relaxation (μSR) measurements on independently grown UTe<subscript>2</subscript> 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 UTe<subscript>2</subscript>. UTe<subscript>2</subscript> receives significant attention as it may be an example of a spin-triplet superconductor but many features of this material are still to be fully understood. Here, the authors use muon spin rotation to investigate the existence of low-temperature magnetic clusters in single crystals of UTe<subscript>2</subscript> and discuss the potential relationship with the temperature dependent behaviour of the specific heat. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
23993650
Volume :
6
Issue :
1
Database :
Complementary Index
Journal :
Communications Physics
Publication Type :
Academic Journal
Accession number :
161655157
Full Text :
https://doi.org/10.1038/s42005-023-01146-8