论文标题

小公园效应的理论在自旋三角体超导体中

Theory of the Little-Parks effect in spin-triplet superconductors

论文作者

Hua, Chengyun, Dumitrescu, Eugene, Halász, Gábor B.

论文摘要

介绍超导环中著名的小公园效应最近引起了人们的关注,因为它有可能在自旋三翼超导体中探测半Quantum涡流。然而,尽管有大量的作品报告了归因于非常规超导性的异常小公园测量值,但在小公园效应中,旋转三键配对的一般特征尚未系统地研究。在这里,我们使用金茨堡 - 兰道理论来研究支持半量子涡流的自旋三角形超导环中的小公园效应。我们计算了临界温度本身的场引起的小公园振荡,以及由于临界温度以下的热涡流隧道而导致的残留电阻。我们观察到两个单独的临界温度,两者之间的单旋式超导状态,并发现由于存在半量子涡流,在较低的临界温度下,临界温度上的每个最小值将每个最小值分为两个最小值。通过严格的残留电阻计算,我们确认较低的临界温度中的这两个最小值在下面的残留电阻中转化为两个最大值,并确定了可以实际解决两个最大值的一般条件。特别是,我们确定了在每个最大最大启动和保持电阻的总体范围较大之间的基本权衡。我们的结果将指导设计介质环几何形状的实验努力,以探测设备尺度上的自旋三翼候选材料中的半量子涡旋。

The celebrated Little-Parks effect in mesoscopic superconducting rings has recently gained great attention due to its potential to probe half-quantum vortices in spin-triplet superconductors. However, despite the large number of works reporting anomalous Little-Parks measurements attributed to unconventional superconductivity, the general signatures of spin-triplet pairing in the Little-Parks effect have not yet been systematically investigated. Here we use Ginzburg-Landau theory to study the Little-Parks effect in a spin-triplet superconducting ring that supports half-quantum vortices; we calculate the field-induced Little-Parks oscillations of both the critical temperature itself and the residual resistance resulting from thermal vortex tunneling below the critical temperature. We observe two separate critical temperatures with a single-spin superconducting state in between and find that, due to the existence of half-quantum vortices, each minimum in the upper critical temperature splits into two minima for the lower critical temperature. From a rigorous calculation of the residual resistance, we confirm that these two minima in the lower critical temperature translate into two maxima in the residual resistance below and establish the general conditions under which the two maxima can be practically resolved. In particular, we identify a fundamental trade-off between sharpening each maximum and keeping the overall magnitude of the resistance large. Our results will guide experimental efforts in designing mesoscopic ring geometries for probing half-quantum vortices in spin-triplet candidate materials on the device scale.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源