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在 Nb2Pd0.81S5 中具有极高上临界场的超导性。

Superconductivity with extremely large upper critical fields in Nb2Pd0.81S5.

机构信息

National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida 32310, USA.

出版信息

Sci Rep. 2013;3:1446. doi: 10.1038/srep01446.

Abstract

Here, we report the discovery of superconductivity in a new transition metal-chalcogenide compound, i.e. Nb2Pd0.81S5, with a transition temperature Tc is approximately equal to 6.6 K. Despite its relatively low Tc, it displays remarkably high and anisotropic superconducting upper critical fields, e.g. μ0Hc2 (T → 0 K) > 37 T for fields applied along the crystallographic b-axis. For a field applied perpendicularly to the b-axis, μ0Hc2 shows a linear dependence in temperature which coupled to a temperature-dependent anisotropy of the upper critical fields, suggests that Nb2Pd0.81S5 is a multi-band superconductor. This is consistent with band structure calculations which reveal nearly cylindrical and quasi-one-dimensional Fermi surface sheets having hole and electron character, respectively. The static spin susceptibility as calculated through the random phase approximation, reveals strong peaks suggesting proximity to a magnetic state and therefore the possibility of unconventional superconductivity.

摘要

在这里,我们报告了一种新的过渡金属-硫属化合物 Nb2Pd0.81S5 中超导性的发现,其转变温度 Tc 约为 6.6 K。尽管其 Tc 相对较低,但它表现出非常高且各向异性的超导上临界场,例如沿晶体学 b 轴施加的场时 μ0Hc2(T→0 K) > 37 T。对于垂直于 b 轴施加的场,μ0Hc2 表现出与温度相关的线性依赖性,这与上临界场的温度相关各向异性耦合在一起,表明 Nb2Pd0.81S5 是一种多带超导体。这与能带结构计算一致,计算结果表明近圆柱形和准一维费米面片分别具有空穴和电子特性。通过随机相位近似计算的静态自旋磁化率显示出强烈的峰值,表明接近磁态,因此存在非常规超导性的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8a0/3595695/70be38fce2ce/srep01446-f1.jpg

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