Zhao Qiang, Shao Ting-Na, Yang Wen-Long, Wang Xue-Yan, Chen Xing-Yu, Chen Mei-Hui, Zhu Fang-Hui, Chen Cheng-Xue, Dou Rui-Fen, Xiong Chang-Min, Liu Haiwen, Nie Jia-Cai
School of Physics and Astronomy, <a href="https://ror.org/022k4wk35">Beijing Normal University</a>, Beijing 100875, People's Republic of China.
Institute of System Engineering, AMS, <a href="https://ror.org/05ct4s596">PLA</a>, Beijing 100020, People's Republic of China.
Phys Rev Lett. 2024 Jul 19;133(3):036003. doi: 10.1103/PhysRevLett.133.036003.
This work reports on the emergence of quantum Griffiths singularity (QGS) associated with the magnetic field induced superconductor-metal transition (SMT) in unconventional Nd_{0.8}Sr_{0.2}NiO_{2} infinite layer superconducting thin films. The system manifests isotropic SMT features under both in-plane and perpendicular magnetic fields. Importantly, after scaling analysis of the isothermal magnetoresistance curves, the obtained effective dynamic critical exponents demonstrate divergent behavior when approaching the zero-temperature critical point B_{c}^{*}, identifying the QGS characteristics. Moreover, the quantum fluctuation associated with the QGS can quantitatively explain the upturn of the upper critical field around zero temperature for both the in-plane and perpendicular magnetic fields in the phase boundary of SMT. These properties indicate that the QGS in the Nd_{0.8}Sr_{0.2}NiO_{2} superconducting thin film is isotropic. Moreover, a higher magnetic field gives rise to a metallic state with the resistance-temperature relation R(T) exhibiting lnT dependence among the 2-10 K range and T^{2} dependence of resistance below 1.5 K, which is significant evidence of Kondo scattering. The interplay between isotropic QGS and Kondo scattering in the unconventional Nd_{0.8}Sr_{0.2}NiO_{2} superconductor can illustrate the important role of rare region in QGS and help to uncover the exotic superconductivity mechanism in this system.
这项工作报道了在非常规的Nd₀.₈Sr₀.₂NiO₂无限层超导薄膜中,与磁场诱导的超导-金属转变(SMT)相关的量子格里菲斯奇点(QGS)的出现。该系统在面内磁场和垂直磁场下均表现出各向同性的SMT特征。重要的是,在对等温磁阻曲线进行标度分析后,所获得的有效动态临界指数在接近零温度临界点Bₑ*时呈现发散行为,确定了QGS特征。此外,与QGS相关的量子涨落可以定量解释SMT相界中面内磁场和垂直磁场在零温度附近上临界场的上升。这些特性表明Nd₀.₈Sr₀.₂NiO₂超导薄膜中的QGS是各向同性的。此外,更高的磁场会导致一种金属态,其电阻-温度关系R(T)在2-10K范围内表现出lnT依赖性,在低于1.5K时电阻表现出T²依赖性,这是近藤散射的重要证据。非常规Nd₀.₈Sr₀.₂NiO₂超导体中各向同性QGS与近藤散射之间的相互作用可以说明稀有区域在QGS中的重要作用,并有助于揭示该系统中奇异的超导机制。