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作 者:Xu Chen Xinhui Zhan Xiaojun Wang Jun Deng Xiao-Bing Liu Xin Chen Jian-Gang Guo Xiaolong Chen 陈旭;战鑫慧;王晓郡;邓俊;刘晓兵;陈欣;郭建刚;陈小龙(Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of Sciences,Beijing 100190,China;Laboratory of High Pressure Physics and Material Science(HPPMS),School of Physics and Physical Engineering,Qufu Normal University,Qufu 273100,China;Songshan Lake Materials Laboratory,Dongguan 523808,China)
机构地区:[1]Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of Sciences,Beijing 100190,China [2]Laboratory of High Pressure Physics and Material Science(HPPMS),School of Physics and Physical Engineering,Qufu Normal University,Qufu 273100,China [3]Songshan Lake Materials Laboratory,Dongguan 523808,China
出 处:《Chinese Physics Letters》2021年第5期114-120,共7页中国物理快报(英文版)
基 金:Supported by the National Key Research and Development Program of China (Grant Nos.2017YFA0304700,2018YFE0202601,and2016YFA0300600);the National Natural Science Foundation of China (Grant Nos.51922105,11804184,11974208,and 51772322);the Chinese Academy of Sciences (Grant No.QYZDJ-SSW-SLH013);the Beijing Natural Science Foundation (Grant No.Z200005);the Shandong Provincial Natural Science Foundation (Grant Nos.ZR2020YQ05,ZR2019MA054,and 2019KJJ020)。
摘 要:We present the superconducting(SC) property and high-robustness of structural stability of kagome CsV_3Sb_5 under in situ high pressures.For the initial SC-I phase,its T_c is quickly enhanced from 3.5 K to 7.6 K and then totally suppressed at P-10 GPa.With further increasing pressure,an SC-Ⅱ phase emerges at P-15 GPa and persists up to 100 GPa.The T_c rapidly increases to the maximal value of 5.2 K at P=53.6 GPa and slowly decreases to 4.7 K at P=100 GPa.A two-dome-like variation of T_c in CsV_3Sb_5 is concluded here.The Raman measurements demonstrate that weakening of E_(2g) mode and strengthening of E_(1g) mode occur without phase transition in the SC-II phase,which is supported by the results of phonon spectra calculations.Electronic structure calculations reveal that exertion of pressure may bridge the gap of topological surface nontrivial states near E_F,i.e.,disappearance of Z2 invariant.Meanwhile,the Fermi surface enlarges significantly,consistent with the increased carrier density.The findings here suggest that the change of electronic structure and strengthened electron-phonon coupling should be responsible for the pressure-induced reentrant SC.
关 键 词:Highly Robust Reentrant Superconductivity in CsV_3Sb_5 under Pressure
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