High-magnetic-field phases in U <sub>1-x</sub> Th <sub>x</sub> Te <sub>2</sub>

C Camilla M. Moir (Department of Physics, University of California San Diego) J John Singleton (NHMFL, Los Alamos National Laboratory, MS E536, Los Alamos, New Mexico 87545, United States) J Joanna Blawat (NHMFL, Los Alamos National Laboratory, MS E536, Los Alamos, New Mexico 87545, United States) E Eric Lee-Wong (Department of Physics, University of California San Diego) Y Yuhang Deng (Department of Physics, University of California San Diego) K Keke Feng (Department of Physics, University of California San Diego) T Tyler Wannamaker (Department of Physics, University of California San Diego) R Ryan E. Baumbach (DC Magnetic Field Facility, National High Magnetic Field Laboratory, Florida State University) M M. Brian Maple (Department of Physics, University of California San Diego)

Abstract

At temperatures T much lower than its superconducting critical temperature T c = 2.1 K, the heavy fermion superconductor UTe 2 has a unique phase diagram of magnetic field H vs. φ and θ, angles H is tilted from the b -axis toward the a - and c -axes, respectively, of its orthorhombic unit cell. The phase diagram contains three distinct superconducting phases: SC 1 in which φ and θ extend from 0 to 90° and H ≤ ~15 T; SC 2 for φ ≤ ~7°, θ ≤ ~4° and ~15 T ≤ H ≤ H m = ~35 T, the onset of the magnetic field polarized (FP) phase, and SC FP which resides entirely within the FP phase in a pocket of superconductivity extending from θ ≈ 20° to 40° and from ~40 T to above 60 T. We studied the evolution of the H vs. θ phase diagram for Th concentrations 0.005 ≤ x ≤ 0.047 in the U 1-x Th x Te 2 system at ~0.6 K. Within this range of x values, SC 1 extends over 0 ≤ θ ≤ 90° and H ≤ ~10 T for x = 0.047, while SC 2 is suppressed. The SC FP and FP phases are unaffected to x = 0.02 but are completely suppressed in the region x = 0.025 to 0.047 where the residual resistance ratio RRR ~3 indicates a significant amount of disorder. These results complement recent studies of nonsuperconducting disordered UTe 2 single crystals in which the SC 1 and SC 2 phases are absent, but the FP and so-called “orphan” SC FP phases are retained.

Article Details

Volume / Issue Vol. 122, Issue 42
Published October 21, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (9)

C

Camilla M. Moir

Department of Physics, University of California San Diego

J

John Singleton

NHMFL, Los Alamos National Laboratory, MS E536, Los Alamos, New Mexico 87545, United States

J

Joanna Blawat

NHMFL, Los Alamos National Laboratory, MS E536, Los Alamos, New Mexico 87545, United States

E

Eric Lee-Wong

Department of Physics, University of California San Diego

Y

Yuhang Deng

Department of Physics, University of California San Diego

K

Keke Feng

Department of Physics, University of California San Diego

T

Tyler Wannamaker

Department of Physics, University of California San Diego

R

Ryan E. Baumbach

DC Magnetic Field Facility, National High Magnetic Field Laboratory, Florida State University

M

M. Brian Maple

Department of Physics, University of California San Diego