Broken Time-Reversal Symmetry in Superconducting Partially Filled Skutterudite Pr1−δPt4Ge12 *

Author:

Zang Jia-Wei,Zhang Jian,Zhu Zi-Hao,Ding Zhao-Feng,Huang Kevin,Peng Xiao-Ran,Hillier Adrian D.,Shu Lei

Abstract

Time reversal symmetry (TRS) is a key symmetry for classification of unconventional superconductors, and the violation of TRS often results in a wealth of novel properties. Here we report the synthesis and superconducting properties of the partially filled skutterudite Pr 1 − δ Pt 4 Ge 12. The results from x-ray diffraction and magnetization measurements show that the [Pt 4 Ge 12 ] cage-forming structure survives and bulk superconductivity is preserved below the superconducting transition temperature T c = 7.80 K. The temperature dependence of both the upper critical field and the electronic specific heat can be described in terms of a two-gap model, providing strong evidence of multi-band superconductivity. TRS breaking is observed using zero field muon-spin relaxation experiments, and the magnitude of the spontaneous field is nearly half of that in PrPt 4 Ge 12.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

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