Molten Salt Flux Liquid Transport Method for Ultra Clean Single Crystals UTe2
arXiv:2402.12740 · doi:10.7566/JPSJ.93.043703
Abstract
Various single crystal growth techniques are presented for the unconventional superconductor UTe2. The molten salt flux liquid transport (MSFLT) method is employed to grow high-quality and large single crystals, exhibiting a high residual resistivity ratio (RRR = 200-800). On the other hand, the Te self-flux and chemical vapor transport (CVT) method produces samples of lower quality. The MSFLT method is a hybrid approach that combines the molten salt flux (MSF) and CVT methods. One significant advantage is that the materials gradually crystallize at the relatively low temperature which is fixed during the main process. This might be crucial for preventing U deficiency and obtaining high-quality and large single crystals of UTe2. Many different single crystals obtained by different technique were characterized by resistivity, specific heat measurements. The superconducting transition temperature decreases with the residual resistivity, followed by the Abrikosov-Gor'kov pair breaking theory. The highest quality sample reaches Tc=2.1K. The residual gamma-value of specific heat for the highest quality sample is only 3 percents of the normal state gamma-value. The specific heat jump, Delta C/(gamma Tc) reaches about 2.7 for high quality samples, indicating a strong coupling superconductor. Furthermore, the magnetic susceptibility for the field along a-axis in a high quality single crystal does not show an up-turn behavior on cooling, which is consistent with the results of NMR Knight shift and muSR experiments.
6 pages, 6 figures, accepted for publication in J. Phys. Soc. Jpn
References in corpus (20)
- Unconventional Superconductivity in Heavy Fermion UTe2
- Unconventional Superconductivity in UTe2
- Multiple Superconducting Phases and Unusual Enhancement of the Upper Critical Field in UTe2
- Single-component superconducting state in UTe2 at 2 K
- First Observation of de Haas-van Alphen Effect and Fermi Surfaces in Unconventional Superconductor UTe2
- Large Reduction in the -axis Knight Shift on UTe with = 2.1 K
- Field-induced tuning of the pairing state in a superconductor
- Chiral superconductivity in UTe2 probed by anisotropic low-energy excitations
- Spatially inhomogeneous superconductivity in UTe2
- Quasi-2D Fermi surface in the anomalous superconductor UTe2
- Flux growth in a horizontal configuration: an analogue to vapor transport growth
- The fate of time-reversal symmetry breaking in UTe2
- Fully gapped pairing state in spin-triplet superconductor UTe
- Change of superconducting character in UTe2induced by magnetic field
- Field Induced Multiple Superconducting Phases in UTe2 along Hard Magnetic Axis
- Effect of uranium deficiency on normal and superconducting properties in unconventional superconductor UTe
- Slow Electronic Dynamics in the Paramagnetic State of UTe
- de Haas-van Alphen Oscillations for the Field Along c-axis in UTe2
- Knight Shift in UTe: Evidence for Relocalization in a Kondo Lattice
- Low temperature specific heat and thermal conductivity in superconducting UTe2
Cited by in corpus (8)
- Clear Reduction in Spin Susceptibility and Superconducting Spin Rotation for in the Early-Stage Sample of Spin-Triplet Superconductor UTe
- A quantum critical line bounds the high field metamagnetic transition surface in UTe
- Intrinsic low-temperature magnetic properties on the ultra-clean UTe with = 2.1 K revealed by Te NMR
- -axis and -axis Knight shift measurements in the superconducting state on ultraclean UTe with = 2.1 K
- Nodal Superconductivity of UTe Probed by Field-Angle-Resolved Specific Heat on a Crystal with K
- Revealing isotropic abundant low-energy excitations in UTe through complex microwave surface impedance
- Evidence of intertwined pair density and charge density wave orders in UTe2
- Theoretical Study of Impurity Effects on Superconductivity in UTe2