Giant transverse magnetic fluctuations at the edge of re-entrant superconductivity in UTe2

V Valeska Zambra A Amit Nathwani M Muhammad Nauman S Sylvia K. Lewin C Corey E. Frank N Nicholas P. Butch A Arkady Shekhter B B. J. Ramshaw K K. A. Modic

Abstract

Abstract UTe 2 exhibits the remarkable phenomenon of re-entrant superconductivity, whereby the zero-resistance state reappears above 40 tesla after being suppressed with a field of around 10 tesla. One potential pairing mechanism, invoked in the related re-entrant superconductors UCoGe and URhGe, involves transverse fluctuations of a ferromagnetic order parameter. However, the requisite ferromagnetic order—present in both UCoGe and URhGe—is absent in UTe 2 , and neutron scattering shows instead that the magnetic susceptibility is peaked at an antiferromagnetic wavevector. Here, we measure the magnetotropic susceptibility of UTe 2 across two field-angle planes. This quantity is sensitive to the magnetic susceptibility in a direction transverse to the applied magnetic field—a quantity that is not accessed in conventional magnetization measurements. We observe a very large decrease in the magnetotropic susceptibility over a broad range of field orientations, indicating a large increase in the transverse magnetic susceptibility. Because our technique probes the magnetic susceptibility in the long wavelength ( q  = 0) limit, this suggests that the strong transverse susceptibility arises from ferromagnetic spin fluctuations. These ferromagnetic fluctuations are likely important for understanding the pairing mechanism in UTe 2 , as all three superconducting phases of UTe 2 surround this region of enhanced susceptibility in the field-angle phase diagram.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 29, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

V

Valeska Zambra

A

Amit Nathwani

M

Muhammad Nauman

S

Sylvia K. Lewin

C

Corey E. Frank

N

Nicholas P. Butch

A

Arkady Shekhter

B

B. J. Ramshaw

K

K. A. Modic