Multiband superconductivity in Ta4Pd3Te16 with anisotropic gap structure

Abstract

We carried out the measurements of magnetoresistance, magnetic susceptibility and specific heat on crystals of the low-dimensional transition metal telluride Ta4Pd3Te16. Our results indicate that Ta4Pd3Te16 is an anisotropic type-II superconductor with the extracted Ginzburg-Landau parameter GL= 84. The upper critical field Hc2(T) shows a linear dependence at low temperature and the anisotropy of Hc2(T) is strongly T-dependent, both of which indicate a multiband scenario. A detailed analysis reveals that the electronic specific heat Cel(T) can be consistently described by a two-gap (s+d waves) model from the base temperature T/Tc 0.12 up to Tc. Our data suggests multiband superconductivity in Ta4Pd3Te16 with anisotropic gap structure.

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