论文标题

UTE2的超导状态中无处不在的自旋冻结

Ubiquitous Spin Freezing in the Superconducting State of UTe2

论文作者

Sundar, Shyam, Azari, N., Goeks, M., Gheidi, S., Abedi, M., Yakovlev, M., Dunsiger, S. R., Wilkinson, J. M., Blundell, S. J., Metz, T. E., Hayes, I. M., Saha, S. R., Lee, S., Woods, A. J., Movshovich, R., Thomas, S. M., Rosa, P. F. S., Butch, N. P., Paglione, J., Sonier, J. E.

论文摘要

在大多数超导体中,电子形成了由声子或长距离相互作用(例如自旋波动)介导的自旋态状态下的库珀对。超导体UTE $ _2 $是一种罕见的材料,据信电子在具有潜在拓扑特性的独特自旋三个状态下形成对。虽然自旋三磁性配对可能是由铁磁或抗铁磁波动介导的,但在实验上,UTE $ _2 $的磁性特性尚不清楚。通过MUON自旋旋转/松弛/放松($μ$ SR)的测量,对独立生长的UTE $ _2 $单晶进行了测量,我们证明了在低温下逐渐将磁簇逐渐冻结成无序的自旋冷冻状态。我们的发现表明,磁性簇的不均匀冻结与特定热量($ c $)的温度依赖性($ c $)的无处不在的残留线性术语有关,而低温上流为$ c/t $,而$ t $。无处不在的磁不均匀性对旨在建立UTE $ _2 $的固有低温特性的实验具有潜在的影响。

In most superconductors electrons form Cooper pairs in a spin-singlet state mediated by either phonons or by long-range interactions such as spin fluctuations. The superconductor UTe$_2$ is a rare material wherein electrons are believed to form pairs in a unique spin-triplet state with potential topological properties. While spin-triplet pairing may be mediated by ferromagnetic or antiferromagnetic fluctuations, experimentally, the magnetic properties of UTe$_2$ are unclear. By way of muon spin rotation/relaxation ($μ$SR) measurements on independently grown UTe$_2$ single crystals we demonstrate the existence of magnetic clusters that gradually freeze into a disordered spin frozen state at low temperatures. Our findings suggest that inhomogeneous freezing of magnetic clusters is linked to the ubiquitous residual linear term in the temperature dependence of the specific heat ($C$) and the low-temperature upturn in $C/T$ versus $T$. The omnipresent magnetic inhomogeneity has potential implications for experiments aimed at establishing the intrinsic low-temperature properties of UTe$_2$.

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