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Superconductivity modulated by structural phase transitions in pressurized vanadium-based kagome metals

Superconductivity 2022-07-27 v1

Abstract

The interplay of superconductivity with electronic and structural instabilities on the kagome lattice provides a fertile ground for the emergence of unusual phenomena. The vanadium-based kagome metals AAV3_3Sb5_5 (A=A= K, Rb, Cs) exhibit superconductivity on an almost ideal kagome lattice, with the superconducting transition temperature TcT_{\rm c} forming two domes upon pressure-tuning. The first dome arises from the competition between superconductivity and a charge-density-wave, whereas the origin for the second dome remains unclear. Herein, we show that the appearance of the second superconducting dome in KV3_3Sb5_5 and RbV3_3Sb5_5 is associated with transitions from hexagonal P6P6/mmmmmm to monoclinic P2P2/mm structures, evidenced by splitting of structural peaks from synchrotron powder X-ray diffraction experiments and imaginary phonon frequencies in first-principles calculations. In KV3_3Sb5_5, transition to an orthorhombic PmmmPmmm structure is further observed for pressure p20p\gtrsim20 GPa, and is correlated with the strong suppression of TcT_{\rm c} in the second superconducting dome. Our findings indicate distortions of the crystal structure modulates superconductivity in AAV3_3Sb5_5 under pressure, providing a platform to study the emergence of superconductivity in the presence of multiple structural instabilities.

Keywords

Cite

@article{arxiv.2110.09056,
  title  = {Superconductivity modulated by structural phase transitions in pressurized vanadium-based kagome metals},
  author = {Feng Du and Rui Li and Shuaishuai Luo and Yu Gong and Yanchun Li and Sheng Jiang and Brenden R. Ortiz and Yi Liu and Xiaofeng Xu and Stephen D. Wilson and Chao Cao and Yu Song and Huiqiu Yuan},
  journal= {arXiv preprint arXiv:2110.09056},
  year   = {2022}
}
R2 v1 2026-06-24T06:57:57.279Z