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arxiv: 2410.06548 · v1 · pith:XFBRQ6TZ · submitted 2024-10-09 · cond-mat.supr-con · cond-mat.mtrl-sci

Investigation of superconducting gap of high-entropy telluride AgInSnPbBiTe5

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classification cond-mat.supr-con cond-mat.mtrl-sci
keywords he-typesuperconductingaginsnpbbite5depthlongnaturepenetrationstrong-coupling
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We performed transverse-field muon spin relaxation/rotation (TF-{\mu}SR) on a high-entropy-type (HE-type) superconductor AgInSnPbBiTe5. The emergence of bulk superconducting states was confirmed from magnetic susceptibility, specific heat, and {\mu}SR. The superconducting gap 2{\Delta}(0) estimated from {\mu}SR was clearly larger than that expected from conventional weak-coupling phonon-mediated model, suggesting the strong-coupling nature of superconductivity. In addition, a long penetration depth of 3.21(7) {\mu}m was obtained. The strong-coupling nature of superconductivity and the long penetration depth are similar to the trends observed in the other HE-type superconductors (HE alloys and transition-metal zirconides), which may be universal feature of HE-type superconductors.

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