超导电性
凝聚态物理
相图
相(物质)
渡线
环境压力
高压
衍射
工作(物理)
费米能级
物理
材料科学
热力学
量子力学
电子
计算机科学
人工智能
作者
Fanghang Yu,Xudong Zhu,Xikai Wen,Zhigang Gui,Zeyu Li,Yulei Han,Tao Wu,Zhenyu Wang,Ziji Xiang,Zhenhua Qiao,Jianjun Ying,Xianhui Chen
标识
DOI:10.1103/physrevlett.128.077001
摘要
The recently discovered kagome superconductors AV_{3}Sb_{5} exhibit tantalizing high-pressure phase diagrams, in which a new domelike superconducting phase emerges under moderate pressure. However, its origin is as yet unknown. Here, we carried out the high-pressure electrical measurements up to 150 GPa, together with the high-pressure x-ray diffraction measurements and first-principles calculations on CsV_{3}Sb_{5}. We find the new superconducting phase to be rather robust and inherently linked to the interlayer Sb2-Sb2 interactions. The formation of Sb2-Sb2 bonds at high pressure tunes the system from two-dimensional to three-dimensional and pushes the p_{z} orbital of Sb2 upward across the Fermi level, resulting in enhanced density of states and increase of T_{C}. Our work demonstrates that the dimensional crossover at high pressure can induce a topological phase transition and is related to the abnormal high-pressure T_{C} evolution. Our findings should apply for other layered materials.
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