Superconductivity In Y7ru4inge12

PHYSICAL REVIEW MATERIALS(2019)

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摘要
We report a type-II intermetallic superconductor Y7Ru4InGe12 with a transition temperature (T-c) of similar to 5.8 K, which is confirmed by zero resistivity, diamagnetic magnetic susceptibility, and specific-heat jump. Single crystals of Y7Ru4InGe12 were grown from a reactive indium flux. Y7Ru4InGe12 crystallizes in the tetragonal space group P4/m and features a [Y7Ru4InGe12] polyanionic network with Y atoms located in three different channels. The upper critical fields of Y7Ru4InGe12 at 0 K are determined to be similar to 5.3 and 2.4 T along the c axis and the ab plane, respectively. The estimated coherence length along the c axis (similar to 174 angstrom) is much larger than the estimated mean free path along the c axis (similar to 29 angstrom) in Y7Ru4InGe12, placing its superconductivity in the so-called dirty regime. The compound exhibits a large superconducting specific-heat jump Delta C/gamma T-e(c )approximate to 2.4, significantly well above the weak-coupling Barden-Cooper-Schrieffer theoretical value of 1.43 and pointing to a strong-coupling scenario in Y7Ru4InGe12. Density-functional-theory calculations show that the density of states in Y7Ru4InGe12 exhibits a broad peak near the Fermi level which mainly derives from Y-4d, Ru-4d, and Ge-4p states.
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