Metastable phase of UTe formed under high pressure above 5 GPa
arXiv:2310.10491 · doi:10.1103/PhysRevMaterials.6.114801
Abstract
Uranium ditelluride (UTe) has attracted recent interest due to its unique superconducting properties, which include the potential for a topological odd-parity superconducting state. Recently, ac-calorimetry measurements under pressure indicate a change in the ground state of UTe from superconducting to antiferromagnetic at 1.4 GPa. Here, we investigate the effect of pressure on the crystal structure of UTe up to 25 GPa at room temperature using x-ray diffraction. We find that UTe, which at ambient conditions has an orthorhombic () structure, transforms to a body-centered tetragonal () structure at 5 GPa in a quasi-hydrostatic neon (Ne) pressure transmitting medium. In the absence of a pressure-transmitting medium, this transformation occurs between 5 and 8 GPa. The data were fit with a third-order Birch-Murnaghan equation of state resulting in values of =46.0 0.6 GPa, =9.3 0.5 (no pressure medium) and =42.5 2.0 GPa, =9.3 (fixed) (neon pressure medium) for the phase. For the phase, =78.9 0.5 GPa and =4.2 0.1 (no pressure transmitting medium), and =70.0 1.1 GPa and =4.1 0.2 (neon pressure medium). The high-pressure tetragonal phase is retained after decompression to ambient pressure, with approximately 30% remaining after 2 days. We argue that the observed phase transition into a higher symmetry structure at P~5 GPa (orthorhombic to tetragonal), is accompanied by an increase in the shortest distance between uranium atoms from 3.6 Angstrom (orthorhombic) to 3.9 Angstrom (tetragonal), which suggests localization of the 5f electrons, albeit with a 10.7% decrease in volume.
Includes supplemental material
References in corpus (15)
- Unconventional Superconductivity in Heavy Fermion UTe2
- Unconventional Superconductivity in UTe2
- Metamagnetic Transition in Heavy Fermion Superconductor UTe2
- Evidence for a pressure-induced antiferromagnetic quantum critical point in intermediate valence UTe2
- Multiple Superconducting Phases and Unusual Enhancement of the Upper Critical Field in UTe2
- Single-component superconducting state in UTe2 at 2 K
- Periodic Anderson model for magnetism and superconductivity in UTe2
- First Observation of de Haas-van Alphen Effect and Fermi Surfaces in Unconventional Superconductor UTe2
- Spatially inhomogeneous superconductivity in UTe2
- Dual nature of 5 electrons in the isostructural UMSi family: from antiferro- to Pauli paramagnetism via hidden order
- Effect of uranium deficiency on normal and superconducting properties in unconventional superconductor UTe
- Core-Level Photoelectron Spectroscopy Study of UTe
- Expansion of the high field-boosted superconductivity in UTe2 under pressure
- Thermodynamic signatures of short-range magnetic correlations in UTe
- Possible Coexistence of Antiferromagnetic and Ferromagnetic Spin Fluctuations in the Spin-triplet Superconductor UTe2 Revealed by 125Te NMR under Pressure
Cited by in corpus (5)
- Pressure-induced structural phase transition and new superconducting phase in UTe2
- Incommensurate antiferromagnetism in UTe2 under pressure
- UTe: a narrow band superconductor
- Metamagnetism in the high-pressure tetragonal phase of UTe
- Multiple localized-itinerant dualities in magnetism of 5f electron systems. The case of UPtSi