论文标题

超导镍ND0.8SR0.2NIO2膜中的旋转对称性破裂

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

论文作者

Ji, Haoran, Li, Yanan, Liu, Yi, Ding, Xiang, Xie, Zheyuan, Qi, Shichao, Qiao, Liang, Yang, Yi-feng, Zhang, Guang-Ming, Wang, Jian

论文摘要

无限层镍,是高-TC超导粉的等值性镍,它是一个有前途的平台,可容纳非常规的超导性,并激发了对凝结物质社区的增长兴趣。尽管进行了许多研究,但镍超导体的超导配对对称性(超导状态的基本特征)仍在争论中。此外,镍盐中的强电子相关性可能会产生丰富的相图,在这种图中,超导性与其他新兴量子状态之间的基础相互作用正在等待探索。在这里,我们研究了带有Corbino-Disk构型的无限镍镍ND0.8SR0.2NIO2超导膜的传输性能对无限层镍镍ND0.8SR0.2NIO2的角度依赖性。随着磁场的增加,磁扰(R(ϕ))的方位角依赖性(R(ϕ))表现出从各向同性到四倍(C4)各向异性的旋转对称性破裂,揭示了对称性破坏相位的转变。接近低温和较大的磁场状态,同时观察到R(ϕ)曲线中的另外两倍(C2)对称分量,并同时观察到温度依赖性临界场的异常上流。我们的工作以不同的旋转对称性揭示了量子状态的演变,并深入了解了镍超导体的整体相图。

The infinite-layer nickelates, isostructural to the high-Tc superconductor cuprates, have risen as a promising platform to host unconventional superconductivity and stimulated growing interests in the condensed matter community. Despite numerous researches, 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 on 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 and provides deep insight into the global phase diagram of the nickelate superconductors.

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