Superconducting diode effect and interference patterns in Kagome CsV3Sb5

Fuente: arXiv
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Main Authors: Le, Tian, Pan, Zhiming, Xu, Zhuokai, Liu, Jinjin, Wang, Jialu, Lou, Zhefeng, Yang, Xiaohui, Wang, Zhiwei, Yao, Yugui, Wu, Congjun, Lin, Xiao
Format: Preprint
Published: 2023
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author Le, Tian
Pan, Zhiming
Xu, Zhuokai
Liu, Jinjin
Wang, Jialu
Lou, Zhefeng
Yang, Xiaohui
Wang, Zhiwei
Yao, Yugui
Wu, Congjun
Lin, Xiao
author_facet Le, Tian
Pan, Zhiming
Xu, Zhuokai
Liu, Jinjin
Wang, Jialu
Lou, Zhefeng
Yang, Xiaohui
Wang, Zhiwei
Yao, Yugui
Wu, Congjun
Lin, Xiao
contents The interplay among frustrated lattice geometry, nontrivial band topology and correlation yields rich quantum states of matter in Kagome systems. A series of recent members in this family, AV3Sb5 (A= K, Rb, Cs), exhibit a cascade of symmetry-breaking transitions, involving the 3Q chiral charge ordering, electronic nematicity, roton pair-density-wave and superconductivity. The nature of the superconducting order is yet to be resolved. Here, we report an indication of chiral superconducting domains with boundary supercurrents in intrinsic CsV3Sb5 flakes. Magnetic field-free superconducting diode effect is observed with polarity modulated by thermal histories, suggesting dynamical superconducting order domains in a spontaneous time-reversal symmetry breaking background. Strikingly, the critical current exhibits the double-slit superconducting interference patterns when subjected to an external magnetic field. Characteristics of the patterns are modulated by thermal cycling. These phenomena are proposed as a consequence of periodically modulated supercurrents flowing along certain domain boundaries constrained by fluxoid quantization. Our results imply a chiral superconducting order, opening a potential for exploring exotic physics, e.g. Majorana zero modes, in this intriguing topological Kagome system.
format Preprint
id arxiv_https___arxiv_org_abs_2309_00264
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Superconducting diode effect and interference patterns in Kagome CsV3Sb5
Le, Tian
Pan, Zhiming
Xu, Zhuokai
Liu, Jinjin
Wang, Jialu
Lou, Zhefeng
Yang, Xiaohui
Wang, Zhiwei
Yao, Yugui
Wu, Congjun
Lin, Xiao
Superconductivity
The interplay among frustrated lattice geometry, nontrivial band topology and correlation yields rich quantum states of matter in Kagome systems. A series of recent members in this family, AV3Sb5 (A= K, Rb, Cs), exhibit a cascade of symmetry-breaking transitions, involving the 3Q chiral charge ordering, electronic nematicity, roton pair-density-wave and superconductivity. The nature of the superconducting order is yet to be resolved. Here, we report an indication of chiral superconducting domains with boundary supercurrents in intrinsic CsV3Sb5 flakes. Magnetic field-free superconducting diode effect is observed with polarity modulated by thermal histories, suggesting dynamical superconducting order domains in a spontaneous time-reversal symmetry breaking background. Strikingly, the critical current exhibits the double-slit superconducting interference patterns when subjected to an external magnetic field. Characteristics of the patterns are modulated by thermal cycling. These phenomena are proposed as a consequence of periodically modulated supercurrents flowing along certain domain boundaries constrained by fluxoid quantization. Our results imply a chiral superconducting order, opening a potential for exploring exotic physics, e.g. Majorana zero modes, in this intriguing topological Kagome system.
title Superconducting diode effect and interference patterns in Kagome CsV3Sb5
topic Superconductivity
url https://arxiv.org/abs/2309.00264