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Metastable phase of UTe$_2$ formed under high pressure above 5 GPa

Strongly Correlated Electrons 2023-10-17 v1 Superconductivity

Abstract

Uranium ditelluride (UTe2_2) 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 UTe2_2 from superconducting to antiferromagnetic at 1.4 GPa. Here, we investigate the effect of pressure on the crystal structure of UTe2_2 up to 25 GPa at room temperature using x-ray diffraction. We find that UTe2_2, which at ambient conditions has an orthorhombic (ImmmImmm) structure, transforms to a body-centered tetragonal (I4/mmmI4/mmm) 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 B0B_0=46.0 ±\pm 0.6 GPa, BB^{\prime}=9.3 ±\pm 0.5 (no pressure medium) and B0B_0=42.5 ±\pm 2.0 GPa, BB^{\prime}=9.3 (fixed) (neon pressure medium) for the ImmmImmm phase. For the I4/mmmI4/mmm phase, B0B_0=78.9 ±\pm 0.5 GPa and BB^{\prime}=4.2 ±\pm 0.1 (no pressure transmitting medium), and B0B_0=70.0 ±\pm 1.1 GPa and BB^{\prime}=4.1 ±\pm 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.

Keywords

Cite

@article{arxiv.2310.10491,
  title  = {Metastable phase of UTe$_2$ formed under high pressure above 5 GPa},
  author = {L. Q. Huston and D. Y. Popov and A. Weiland and M. M. Bordelon and P. F. S. Rosa and R. L. Rowland and B. L. Scott and G. Shen and C. Park and E. K. Moss and S. M. Thomas and J. D. Thompson and B. T. Sturtevant and E. D. Bauer},
  journal= {arXiv preprint arXiv:2310.10491},
  year   = {2023}
}

Comments

Includes supplemental material