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无限层镍酸盐超导体中的各向异性相刚度

Anisotropic phase stiffness in infinite-layer nickelates superconductors.

作者信息

Xu Minyi, Qiu Dong, Xu Minghui, Guo Yehao, Shen Cheng, Yang Chao, Sun Wenjie, Nie Yuefeng, Li Zi-Xiang, Xiang Tao, Qiao Liang, Xiong Jie, Li Yanrong

机构信息

State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu, China.

School of Physics, University of Electronic Science and Technology of China, Chengdu, China.

出版信息

Nat Commun. 2025 Jul 23;16(1):6780. doi: 10.1038/s41467-025-61654-9.

Abstract

In unconventional superconductors such as cuprates and iron pnictides and chalcogenides, phase stiffness-a measure of the energy cost associated with superconducting phase variations-governs the formation of superconductivity. Here we demonstrate a vector current technique enabling in-situ angle-resolved transport measurements to reveal anisotropic phase stiffness in infinite-layer nickelate superconductors. Pronounced anisotropy of in-plane resistance manifests itself in both normal and superconducting transition states, indicating crystal symmetry breaking. Remarkably, the electric conductivity of NdSrNiO peaks at 125° between the direction of the current and crystal principal axis, but this angle evolves to 160° near zero-resistance temperature. Further measurements reveal that the phase stiffness maximizes along 160°, a direction distinct from the symmetry axis imposed by both electronic nematicity and the crystal lattice. Identical measurements conducted on a prototypical cuprate superconductor yield consistent results. By identifying the contrasting anisotropy between electron fluid and superfluid in both nickelates and cuprates, our findings provide clues for a unified framework for understanding unconventional superconductors.

摘要

在非常规超导体中,如铜酸盐、铁基氮化物和硫族化物,相位刚度(一种与超导相位变化相关的能量成本度量)决定了超导性的形成。在此,我们展示了一种矢量电流技术,该技术能够进行原位角分辨输运测量,以揭示无限层镍酸盐超导体中的各向异性相位刚度。面内电阻的显著各向异性在正常和超导转变状态下均有体现,这表明晶体对称性被破坏。值得注意的是,NdSrNiO的电导率在电流方向与晶体主轴方向夹角为125°时达到峰值,但在接近零电阻温度时,该角度演变为160°。进一步的测量表明,相位刚度沿160°方向达到最大值,这一方向与由电子向列性和晶格所施加的对称轴不同。对典型铜酸盐超导体进行的相同测量得出了一致的结果。通过识别镍酸盐和铜酸盐中电子流体和超流体之间的对比各向异性,我们的发现为理解非常规超导体的统一框架提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31af/12287525/bb6085c47c2a/41467_2025_61654_Fig1_HTML.jpg

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