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Superconductivity in In-doped AgSnBiTe3 with possible band inversion

Superconductivity 2021-11-15 v2 Strongly Correlated Electrons

Abstract

We investigated the chemical pressure effects on structural and electronic properties of SnTe-based material using partial substitution of Sn by Ag0.5Bi0.5, which results in lattice shrinkage. For Sn1-2x(AgBi)xTe, single-phase polycrystalline samples were obtained with a wide range of x. On the basis of band calculations, we confirmed that the Sn1-2x(AgBi)xTe system is basically possessing band inversion and topologically preserved electronic states. To explore new superconducting phases related to the topological electronic states, we investigated the In-doping effects on structural and superconducting properties for x = 0.33 (AgSnBiTe3). For (AgSnBi)(1-y)/3InyTe, single-phase polycrystalline samples were obtained for y = 0-0.5 by high-pressure synthesis. Superconductivity was observed for y = 0.2-0.5. For y = 0.4, the transition temperature estimated from zero-resistivity state was 2.4 K, and the specific heat investigation confirmed the emergence of bulk superconductivity. Because the presence of band inversion was theoretically predicted, and the parameters obtained from specific heat analyses were comparable to In-doped SnTe, we expect that the (AgSnBi)(1-y)/3InyTe and other (Ag,In,Sn,Bi)Te phases are candidate systems for studying topological superconductivity.

Keywords

Cite

@article{arxiv.2109.07167,
  title  = {Superconductivity in In-doped AgSnBiTe3 with possible band inversion},
  author = {Tsubasa Mitobe and Kazuhisa Hoshi and Md. Riad Kasem and Ryosuke Kiyama and Hidetomo Usui and Aichi Yamashita and Ryuji Higashinaka and Tatsuma D. Matsuda and Yuji Aoki and Takayoshi Katase and Yosuke Goto and Yoshikazu Mizuguchi},
  journal= {arXiv preprint arXiv:2109.07167},
  year   = {2021}
}

Comments

18 pages, 9 figures, supplemental data is included

R2 v1 2026-06-24T05:58:53.824Z