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BiSr(Ca,Dy)CuO中从电荷有序绝缘体到高温超导体的演化

Evolution from a charge-ordered insulator to a high-temperature superconductor in BiSr(Ca,Dy)CuO.

作者信息

Zou Changwei, Choi Jaewon, Li Qizhi, Ye Shusen, Yin Chaohui, Garcia-Fernandez Mirian, Agrestini Stefano, Qiu Qingzheng, Cai Xinqiang, Xiao Qian, Zhou Xingjiang, Zhou Ke-Jin, Wang Yayu, Peng Yingying

机构信息

International Center for Quantum Materials, School of Physics, Peking University, Beijing, China.

State Key Laboratory of Low Dimensional Quantum Physics, Department of Physics, Tsinghua University, Beijing, China.

出版信息

Nat Commun. 2024 Sep 4;15(1):7739. doi: 10.1038/s41467-024-52124-9.

Abstract

How Cooper pairs form and condense has been the main challenge in the physics of copper-oxide high-temperature superconductors. Great efforts have been made in the 'underdoped' region of the phase diagram, through doping a Mott insulator or cooling a strange metal. However, there is still no consensus on how superconductivity emerges when electron-electron correlations dominate and the Fermi surface is missing. To address this issue, here we carry out high-resolution resonant inelastic X-ray scattering and scanning tunneling microscopy studies on prototype cuprates BiSrCaDyCuO near the onset of superconductivity, combining bulk and surface, momentum- and real-space information. We show that an incipient charge order exists in the antiferromagnetic regime down to 0.04 holes per CuO unit, entangled with a particle-hole asymmetric pseudogap. The charge order induces an intensity anomaly in the bond-buckling phonon branch, which exhibits an abrupt increase once the system enters the superconducting dome. Our results suggest that the Cooper pairs grow out of a charge-ordered insulating state, and then condense accompanied by an enhanced interplay between charge excitations and electron-phonon coupling.

摘要

库珀对如何形成并凝聚,一直是铜氧化物高温超导体物理学中的主要挑战。在相图的“欠掺杂”区域,人们通过掺杂莫特绝缘体或冷却奇异金属付出了巨大努力。然而,当电子-电子关联占主导且费米面缺失时,超导性如何出现仍未达成共识。为解决这个问题,我们对原型铜酸盐BiSrCaDyCuO在超导起始点附近进行了高分辨率共振非弹性X射线散射和扫描隧道显微镜研究,结合了体相和表面、动量空间和实空间信息。我们表明,在反铁磁区域直至每个CuO单元有0.04个空穴时,存在一种初始电荷序,它与粒子-空穴不对称赝能隙相互纠缠。这种电荷序在键弯曲声子分支中诱导出强度异常,一旦系统进入超导穹顶,该异常就会急剧增加。我们的结果表明,库珀对从电荷有序绝缘态中产生,然后伴随着电荷激发与电子-声子耦合之间增强的相互作用而凝聚。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d580/11375163/a1e4fd236914/41467_2024_52124_Fig1_HTML.jpg

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