High-magnetic-field phases in U <sub>1-x</sub> Th <sub>x</sub> Te <sub>2</sub>
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
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (9)
Camilla M. Moir
Department of Physics, University of California San Diego
John Singleton
NHMFL, Los Alamos National Laboratory, MS E536, Los Alamos, New Mexico 87545, United States
Joanna Blawat
NHMFL, Los Alamos National Laboratory, MS E536, Los Alamos, New Mexico 87545, United States
Eric Lee-Wong
Department of Physics, University of California San Diego
Yuhang Deng
Department of Physics, University of California San Diego
Keke Feng
Department of Physics, University of California San Diego
Tyler Wannamaker
Department of Physics, University of California San Diego
Ryan E. Baumbach
DC Magnetic Field Facility, National High Magnetic Field Laboratory, Florida State University
M. Brian Maple
Department of Physics, University of California San Diego