Superconducting properties in a candidate topological nodal line semimetal SnTaS with a centrosymmetric crystal structure
arXiv:1905.01450 · doi:10.1103/PhysRevB.100.064516
Abstract
We report the magnetization, electrical resistivity, specific heat measurements and band structure calculations of layered superconductor SnTaS. The experiments are performed on single crystals grown by chemical vapor transport method. The resistivity and magnetic susceptibility indicate that SnTaS is a type-II superconductor with transition temperature K. The upper critical field () shows large anisotropy for magnetic field parallel to plane () and axis (), and the temperature dependence of for shows obvious unconventional upward feature at low temperature. Band structure of SnTaS shows several band crossings near the Fermi level, which form three nodal lines in the k = 0 plane resulting in drumhead-like surface states when spin-orbit coupling is not considered. These results indicate that SnTaS is a superconductor with possible topological nodal line semimetal character.