Possible pairing mechanism switching driven by structural symmetry breaking in BiS2-based layered superconductors

Author:

Yamashita Aichi,Usui Hidetomo,Hoshi Kazuhisa,Goto Yosuke,Kuroki Kazuhiko,Mizuguchi Yoshikazu

Abstract

AbstractInvestigation of isotope effects on superconducting transition temperature (Tc) is one of the useful methods to examine whether electron–phonon interaction is essential for pairing mechanisms. The layered BiCh2-based (Ch: S, Se) superconductor family is a candidate for unconventional superconductors, because unconventional isotope effects have previously been observed in La(O,F)BiSSe and Bi4O4S3. In this study, we investigated the isotope effects of 32S and 34S in the high-pressure phase of (Sr,La)FBiS2, which has a monoclinic crystal structure and a higher Tc of ~ 10 K under high pressures, and observed conventional-type isotope shifts in Tc. The conventional-type isotope effects in the monoclinic phase of (Sr,La)FBiS2 are different from the unconventional isotope effects observed in La(O,F)BiSSe and Bi4O4S3, which have a tetragonal structure. The obtained results suggest that the pairing mechanisms of BiCh2-based superconductors could be switched by a structural-symmetry change in the superconducting layers induced by pressure effects.

Funder

Advanced Research Program under the Human Resources Funds of Tokyo

JSPS KAKENHI

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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