论文标题

SR2RUO4的双连接的介质超导缸中半量子涡流的磁力振荡研究

Magnetoresistance oscillation study of the half-quantum vortex in doubly connected mesoscopic superconducting cylinders of Sr2RuO4

论文作者

Cai, Xinxin, Zakrzewski, Brian M., Ying, Yiqun A., Kee, Hae-Young, Sigrist, Manfred, Ortmann, J. Elliott, Sun, Weifeng, Mao, Zhiqiang, Liu, Ying

论文摘要

在单个晶体超导体中对高度不寻常的半量子涡旋(HQV)的观察无明确地排除了超导顺序参数的自旋单词对称性。先前在悬臂扭矩磁力测量测量中的SR2RUO4的介观样品中观察到HQV,从而为材料中的自旋三键配对提供了直接的证据。此外,它提出了有关HQV的重要问题,包括其稳定性和动态。这些问题在很大程度上尤其没有实验。我们在本文中报告说,在介质大小的单晶SR2RUO4的介观,双连接的圆柱体中检测HQV,并检查了通过磁磁性(MR)振动测量测量HQV所需的平面磁场效应。在我们的数据中发现的几个不同特征,尤其是仅在足够大的平面内磁场以及大测量电流的情况下看到的MR振荡中的浸入和次级峰与HQV棒状态形成和大量测量电流有关,并通过样品的ABRABRIKOSOV HQV形成。结论是从对数据的分析中得出的,使用热激活的涡流交叉模型克服了一个自由能屏障,该屏障由圆柱体中的施加的磁通量以及测量电流调节。还发现了样品中HQV通量状态捕获的证据。我们对介质SR2RUO4中HQV的观察不仅提供了SR2RUO4中自旋三个超导性超导性的其他证据,而且还洞悉了HQV物理学,包括其自发的自旋极化,稳定性,稳定性和动力学。我们的研究还揭示了测量电流对与HQV相关的自发自旋极化的大小的可能影响。

The observation of the highly unusual half-quantum vortex (HQV) in a single crystalline superconductor excludes unequivocally the spin-singlet symmetry of the superconducting order parameter. HQVs were observed previously in mesoscopic samples of Sr2RuO4 in cantilever torque magnetometry measurements, thus providing direct evidence for spin-triplet pairing in the material. In addition, it raised important questions on HQV, including its stability and dynamics. These issues have remained largely unexplored, in particular, experimentally. We report in this paper the detection of HQVs in mesoscopic, doubly connected cylinders of single-crystalline Sr2RuO4 of a mesoscopic size and the examination of the effect of the in-plane magnetic field needed for the observation of the HQV by magnetoresistance (MR) oscillations measurements. Several distinct features found in our data, especially a dip and secondary peaks in the MR oscillations seen only in the presence of a sufficiently large in-plane magnetic field as well as a large measurement current, are linked to the formation of the HQV fluxoid state in and crossing of an Abrikosov HQV through the sample. The conclusion is drawn from the analysis of our data using a model of thermally activated vortex crossing overcoming a free-energy barrier which is modulated by the applied magnetic flux enclosed in the cylinder as well as the measurement current. Evidence for the trapping of an HQV fluxoid state in the sample was also found. Our observation of the HQV in mesoscopic Sr2RuO4 provided not only additional evidence for spin-triplet superconductivity in Sr2RuO4 but also insights into the physics of HQV, including its spontaneous spin polarization, stability, and dynamics. Our study also revealed a possible effect of the measurement current on the magnitude of the spontaneous spin polarization associated with the HQV.

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