论文标题

高-TC最大化和持久性的电子起源

Electronic Origin of High-Tc Maximization and Persistence in Trilayer Cuprate Superconductors

论文作者

Luo, Xiangyu, Chen, Hao, Li, Yinghao, Gao, Qiang, Yin, Chaohui, Yan, Hongtao, Miao, Taimin, Luo, Hailan, Shu, Yingjie, Chen, Yiwen, Lin, Chengtian, Zhang, Shenjin, Wang, Zhimin, Zhang, Fengfeng, Yang, Feng, Peng, Qinjun, Liu, Guodong, Zhao, Lin, Xu, Zuyan, Xiang, Tao, Zhou, X. J.

论文摘要

在高温库酸盐超导体中,发现超导过渡温度TC取决于结构单元中的CuO2平面(N)的数量,并且在三层系统中实现了最大TC(n = 3)。还发现,三层超导体显示出不寻常的相图,TC在过多的区域中保持恒定,这与其他Cuprate超导体通常发现的TC降低形成鲜明对比。 TC最大化在三层超导体中的电子起源及其在超过的区域中的高TC持久性尚不清楚。通过进行高分辨率激光的角度解析光发射(ARPES)测量,在这里我们报告了三层超导体中异常超导性能的显微镜起源的启示。我们第一次观察到BI2SR2CA2CU3O10+D(BI2223)超导体中的三层分裂。观察到的费米表面,带结构,超导间隙和选择性的Bogoliubov带杂交可以通过三层相互作用模型很好地描述。提取了涉及涉及内部和层间跳和配对的微观过程的定量信息。揭示了BI2223中最大TC的电子起源,并且揭示了高度TC在过多的区域中的持久性。这些结果为理解高TC超导性的关键见解提供了关键的见解,并铺平了进一步增强Cutrate超导体中TC的方法。

In high temperature cuprate superconductors, it was found that the superconducting transition temperature Tc depends on the number of CuO2 planes (n) in the structural unit and the maximum Tc is realized in the trilayer system (n=3). It was also found that the trilayer superconductors exhibit an unusual phase diagram that Tc keeps nearly constant in the overdoped region which is in strong contrast to the Tc decrease usually found in other cuprate superconductors. The electronic origin of the Tc maximization in the trilayer superconductors and its high Tc persistence in the overdoped region remains unclear. By taking high resolution laser-based angle resolved photoemission (ARPES) measurements, here we report our revelation of the microscopic origin of the unusual superconducting properties in the trilayer superconductors. For the first time we have observed the trilayer splitting in Bi2Sr2Ca2Cu3O10+d (Bi2223) superconductor. The observed Fermi surface, band structures, superconducting gap and the selective Bogoliubov band hybridizations can be well described by a three-layer interaction model. Quantitative information of the microscopic processes involving intra- and interlayer hoppings and pairings are extracted. The electronic origin of the maximum Tc in Bi2223 and the persistence of the high Tc in the overdoped region is revealed. These results provide key insights in understanding high Tc superconductivity and pave a way to further enhance Tc in the cuprate superconductors.

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