Superconducting-insulating phase transition in pressurized Ba1-xKxBiO3

Fuente: arXiv
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Main Authors: Han, Jinyu, Zhu, Xiangde, Zhang, Jianfeng, Cai, Shu, Wang, Luhong, Gao, Yang, Liu, Fuyang, Liu, Haozhe, Kawaguchi, Saori I., Guo, Jing, Zhou, Yazhou, Zhao, Jinyu, Wang, Pengyu, Cao, Lixin, Tian, Mingliang, Wu, Qi, Xiang, Tao, Sun, Liling
Format: Preprint
Published: 2023
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author Han, Jinyu
Zhu, Xiangde
Zhang, Jianfeng
Cai, Shu
Wang, Luhong
Gao, Yang
Liu, Fuyang
Liu, Haozhe
Kawaguchi, Saori I.
Guo, Jing
Zhou, Yazhou
Zhao, Jinyu
Wang, Pengyu
Cao, Lixin
Tian, Mingliang
Wu, Qi
Xiang, Tao
Sun, Liling
author_facet Han, Jinyu
Zhu, Xiangde
Zhang, Jianfeng
Cai, Shu
Wang, Luhong
Gao, Yang
Liu, Fuyang
Liu, Haozhe
Kawaguchi, Saori I.
Guo, Jing
Zhou, Yazhou
Zhao, Jinyu
Wang, Pengyu
Cao, Lixin
Tian, Mingliang
Wu, Qi
Xiang, Tao
Sun, Liling
contents We report the first observation of a pressure-induced transition from a superconducting (SC) to an insulating (I) phase in single-crystal Ba1-xKxBiO3 (x = 0.4, 0.43, 0.52, and 0.58) superconductors. X-ray diffraction measurements conducted at 20 K reveal a direct relationship between this SC-I transition and a pressure-induced distortion of crystal structure. With increasing pressure, the lattice parameters a and c of the ambient-pressure superconducting tetragonal (T) phase are compressed continuously below a critical pressure (Pc1), wherein the pressure (P) dependence of superconducting transition temperature (Tc) displays a small variation. However, upon further compression, the lattice of the compressed T phase displays an anisotropic change, and Tc shows a monotonous decrease. When the pressure reaches Pc2 (Pc2 > Pc1), the compressed T phase collapses along the c axis, followed by the disappearance of superconductivity and the appearance of the insulating phase. This SC-I transition is fully reversible, with the critical pressure increasing alongside K doping concentration. These findings are strikingly similar to the SC-I transition observed in hole-doped high-Tc cuprate superconductors under pressure. Identifying their commonalities could deepen our understanding of the mechanisms that underlie high- Tc superconductivity in these two oxide superconductors with a perovskite structure.
format Preprint
id arxiv_https___arxiv_org_abs_2305_08406
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Superconducting-insulating phase transition in pressurized Ba1-xKxBiO3
Han, Jinyu
Zhu, Xiangde
Zhang, Jianfeng
Cai, Shu
Wang, Luhong
Gao, Yang
Liu, Fuyang
Liu, Haozhe
Kawaguchi, Saori I.
Guo, Jing
Zhou, Yazhou
Zhao, Jinyu
Wang, Pengyu
Cao, Lixin
Tian, Mingliang
Wu, Qi
Xiang, Tao
Sun, Liling
Superconductivity
We report the first observation of a pressure-induced transition from a superconducting (SC) to an insulating (I) phase in single-crystal Ba1-xKxBiO3 (x = 0.4, 0.43, 0.52, and 0.58) superconductors. X-ray diffraction measurements conducted at 20 K reveal a direct relationship between this SC-I transition and a pressure-induced distortion of crystal structure. With increasing pressure, the lattice parameters a and c of the ambient-pressure superconducting tetragonal (T) phase are compressed continuously below a critical pressure (Pc1), wherein the pressure (P) dependence of superconducting transition temperature (Tc) displays a small variation. However, upon further compression, the lattice of the compressed T phase displays an anisotropic change, and Tc shows a monotonous decrease. When the pressure reaches Pc2 (Pc2 > Pc1), the compressed T phase collapses along the c axis, followed by the disappearance of superconductivity and the appearance of the insulating phase. This SC-I transition is fully reversible, with the critical pressure increasing alongside K doping concentration. These findings are strikingly similar to the SC-I transition observed in hole-doped high-Tc cuprate superconductors under pressure. Identifying their commonalities could deepen our understanding of the mechanisms that underlie high- Tc superconductivity in these two oxide superconductors with a perovskite structure.
title Superconducting-insulating phase transition in pressurized Ba1-xKxBiO3
topic Superconductivity
url https://arxiv.org/abs/2305.08406