Callaghan F D, Laulajainen M, Kaiser C V, Sonier J E
Department of Physics, Simon Fraser University, Burnaby, British Columbia V5A 1S6, Canada.
Phys Rev Lett. 2005 Nov 4;95(19):197001. doi: 10.1103/PhysRevLett.95.197001. Epub 2005 Nov 1.
The magnetic field dependence of the vortex core size in the multiband superconductor NbSe2 has been determined from muon spin rotation measurements. The spatially extended nature of the quasiparticle core states associated with the smaller gap leads to a rapid field-induced shrinkage of the core size at low fields, while the more tightly bound nature of the states associated with the larger gap leads to a field-independent core size for fields greater than 4 kOe. A simple model is proposed for the density of delocalized core states that establishes a direct relationship between the field-induced reduction of the vortex core size and the corresponding enhancement of the electronic thermal conductivity. We show that this model accurately describes both NbSe2 and the single-band superconductor V3Si.
通过μ子自旋旋转测量确定了多带超导体NbSe₂中涡旋核尺寸与磁场的依赖关系。与较小能隙相关的准粒子核心态的空间扩展特性导致在低场时核心尺寸迅速因场致收缩,而与较大能隙相关的态的束缚更强,使得在大于4 kOe的场中核心尺寸与场无关。针对离域核心态密度提出了一个简单模型,该模型建立了场致涡旋核尺寸减小与电子热导率相应增强之间的直接关系。我们表明,该模型能准确描述NbSe₂和单带超导体V₃Si。