超导电性
凝聚态物理
电荷密度波
电荷(物理)
兴奋剂
电荷密度
相图
物理
充电顺序
基本电荷
电荷综合征
相(物质)
量子力学
心理学
精神科
电子
作者
Linus Kautzsch,Yuzki M. Oey,Hong Li,Zheng Ren,Brenden R. Ortiz,Ganesh Pokharel,Ram Seshadri,Jacob Ruff,Terawit Kongruengkit,John W. Harter,Ziqiang Wang,Ilija Zeljkovic,Stephen D. Wilson
标识
DOI:10.1038/s41535-023-00570-x
摘要
Abstract The class of A V 3 Sb 5 ( A =K, Rb, Cs) kagome metals hosts unconventional charge density wave states seemingly intertwined with their low temperature superconducting phases. The nature of the coupling between these two states and the potential presence of nearby, competing charge instabilities however remain open questions. This phenomenology is strikingly highlighted by the formation of two ‘domes’ in the superconducting transition temperature upon hole-doping CsV 3 Sb 5 . Here we track the evolution of charge correlations upon the suppression of long-range charge density wave order in the first dome and into the second of the hole-doped kagome superconductor CsV 3 Sb 5− x Sn x . Initially, hole-doping drives interlayer charge correlations to become short-ranged with their periodicity diminished along the interlayer direction. Beyond the peak of the first superconducting dome, the parent charge density wave state vanishes and incommensurate, quasi-1D charge correlations are stabilized in its place. These competing, unidirectional charge correlations demonstrate an inherent electronic rotational symmetry breaking in CsV 3 Sb 5 , and reveal a complex landscape of charge correlations within its electronic phase diagram. Our data suggest an inherent 2 k f charge instability and competing charge orders in the A V 3 Sb 5 class of kagome superconductors.
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