Rotational symmetry breaking in superconducting nickelate Nd0.8Sr0.2NiO2 films

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作者
Haoran Ji
Yi Liu
Yanan Li
Xiang Ding
Zheyuan Xie
Chengcheng Ji
Shichao Qi
Xiaoyue Gao
Minghui Xu
Peng Gao
Liang Qiao
Yi-feng Yang
Guang-Ming Zhang
Jian Wang
机构
[1] Peking University,International Center for Quantum Materials, School of Physics
[2] Renmin University of China,Department of Physics and Beijing Key Laboratory of Opto
[3] Renmin University of China,electronic Functional Materials & Micro
[4] The Pennsylvania State University,nano Devices
[5] University of Electronic Science and Technology of China,Key Laboratory of Quantum State Construction and Manipulation (Ministry of Education)
[6] Peking University,Department of Physics
[7] Chinese Academy of Sciences,School of Physics
[8] University of Chinese Academy of Sciences,Electron Microscopy Laboratory, School of Physics
[9] Songshan Lake Materials Laboratory,Beijing National Laboratory for Condensed Matter Physics and Institute of Physics
[10] Tsinghua University,School of Physical Sciences
[11] Frontier Science Center for Quantum Information,State Key Laboratory of Low
[12] Collaborative Innovation Center of Quantum Matter,Dimensional Quantum Physics and Department of Physics
[13] University of Chinese Academy of Sciences,CAS Center for Excellence in Topological Quantum Computation
[14] Beijing Academy of Quantum Information Sciences,undefined
[15] Hefei National Laboratory,undefined
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摘要
The infinite-layer nickelates, isostructural to the high-Tc cuprate superconductors, have emerged as a promising platform to host unconventional superconductivity and stimulated growing interest in the condensed matter community. Despite considerable attention, the superconducting pairing symmetry of the nickelate superconductors, the fundamental characteristic of a superconducting state, is still under debate. Moreover, the strong electronic correlation in the nickelates may give rise to a rich phase diagram, where the underlying interplay between the superconductivity and other emerging quantum states with broken symmetry is awaiting exploration. Here, we study the angular dependence of the transport properties of the infinite-layer nickelate Nd0.8Sr0.2NiO2 superconducting films with Corbino-disk configuration. The azimuthal angular dependence of the magnetoresistance (R(φ)) manifests the rotational symmetry breaking from isotropy to four-fold (C4) anisotropy with increasing magnetic field, revealing a symmetry-breaking phase transition. Approaching the low-temperature and large-magnetic-field regime, an additional two-fold (C2) symmetric component in the R(φ) curves and an anomalous upturn of the temperature-dependent critical field are observed simultaneously, suggesting the emergence of an exotic electronic phase. Our work uncovers the evolution of the quantum states with different rotational symmetries in nickelate superconductors and provides deep insight into their global phase diagram.
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