LaRhSb: A new ternary superconducting rhodium-antimonide
arXiv:2206.05635 · doi:10.1088/2752-5724/ac972f
Abstract
Rhodium-containing compounds offer a fertile playground to explore novel materials with superconductivity and other fantastic electronic correlation effects. A new ternary rhodium-antimonide LaRhSb () has been synthesized by a Bi-flux method. It crystallizes in the orthorhombic PrIrSb-like structure, with the space group (No. 62). The crystalline structure appears as stacking the two dimensional RhSb- and RhSb-polyhedra networks along axis, and the La atoms embed in the cavities of these networks. Band structure calculations confirm it as a multi-band metal with a van-Hove singularity like feature at the Fermi level, whose density of states are mainly of Rh-4 and Sb-5 characters. The calculations also imply that the redundant Rh acts as charge dopant. Superconductivity is observed in this material with onset transition at 0.8 K. Ultra-low temperature magnetic susceptibility and specific heat measurements suggest that it is an s-wave type-II superconductor. Our work may also imply that the broad Sb (=Rare earth, =Rh, Ir...) family may host new material bases where new superconductors, quantum magnetism and other electronic correlation effects could be found.
15+1 pages, 7+1 figures, 2+1 tables
References in corpus (7)
- Field-induced transition from even to odd parity superconductivity in CeRhAs
- Charge density wave orders and enhanced superconductivity under pressure in the kagome metal CsV3Sb5
- Specific heat measurements of the gap structure of the organic superconductors kappa-(ET)_2Cu[N(CN)_2]Br and kappa-(ET)_2Cu(NCS)_2
- Observation of antiferromagnetic order as odd-parity multipoles inside the superconducting phase in CeRhAs
- Magnetic property and crystalline electric field effect in ThCrSi-type CeNiAs
- Superconductivity from buckled-honeycomb-vacancy ordering
- Fermi surface nesting, vacancy ordering and the emergence of superconductivity in IrSb compounds