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Relationship between the parent charge transfer gap and maximum transition temperature in cuprates

查看全文 作  者:Wei [1]Ruan;Cheng [2]Hu;Jianfa [2]Zhao;Peng [1]Cai;Yingying [2]Peng;Cun [1]Ye;Runze [2]Yu;Xintong [1]Li;Zhenqi [1]Hao;Changqing [2,3]Jin;Xingjiang [2,3]Zhou;Zheng-Yu [3,4]Weng;Yayu [3]Wang 高影响力作者 机构地区:[1]State Key Laboratory of Low Dimensional Quantum Physics,Department of Physics, Tsinghua University, Beijing 100084,China;[2]Beijing National Laboratory for Condensed Matter Physics,Institute of Physics, Chinese Academy of Sciences,;[3]Collaborative Innovation Center of Quantum Matter,Beijing 100084, China;[4]Institute for Advanced Study, Tsinghua University,Beijing 100084, China高影响力机构 出  处:《Science Bulletin》索引2016年第61卷第23期,共7页高影响力期刊 基  金:supported by the National Natural Science Foundation of China and Ministry of Science and Technology of the People’s Republic of China;financial support from the Strategic Priority Research Program (B) of the Chinese Academy of Sciences (XDB07020300) 摘  要:One of the biggest puzzles concerning the cuprate high temperature superconductors is what determines the maximum transition temperature(Tc,max), which varies from less than 30 to above 130 K in different compounds.Despite this dramatic variation, a robust trend is that within each family, the double-layer compound always has higher Tc,maxthan the single-layer counterpart. Here we use scanning tunneling microscopy to investigate the electronic structure of four cuprate parent compounds belonging to two different families. We find that within each family, the double layer compound has a much smaller charge transfer gap size(DCT), indicating a clear anticorrelation between DCTand Tc,max. These results suggest that the charge transfer gap plays a key role in the superconducting physics of cuprates, which shed important new light on the high Tc mechanism from doped Mott insulator perspective. 关 键 词:电荷转移 铜氧化物 转变温度 间隙尺寸 高温超导体 显微镜观察 化合物 电子结构
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