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首页> 外文期刊>Superconductor Science & Technology >Equilibrium states of pancake vortices in layered superconductors: coupling of inter-layer ordering and in-layer ordering
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Equilibrium states of pancake vortices in layered superconductors: coupling of inter-layer ordering and in-layer ordering

机译:层状超导体中薄煎饼涡的平衡状态:层间有序和层内有序的耦合

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摘要

We numerically study the static configurations of pancake vortices in layered superconductors. We analyze how disordering induced by random pinning centers competes with inter-layer ordering and in-layer ordering. In general, for inter-layer ordering, 3D states composed of coupled vortex lines are formed for strong inter-layer coupling strength and weak pinning strength. In contrast, 2D states composed of decoupled individual pancake vortices are formed for weak inter-layer coupling strength and strong pinning strength. For in-layer ordering, with increasing pinning forces, the in-layer structure evolves from crystals to Bragg glasses (BGs), vortex glasses (VGs), and liquid-like structures. Changing the vortex density, an initially fast disordering, then slow ordering procedure is found for both in-layer and inter-layer ordering, which is a possible clue to second peak effect (SPE). The reason behind this non-monotonic behavior is discussed. Our results are summarized in a phase diagram in the plane of 'inter-layer coupling strength s(m) versus pinning strength f(p).
机译:我们数值研究了层状超导体中薄煎饼涡的静态构型。我们分析了由随机钉扎中心引起的无序状态如何与层间排序和层内排序竞争。通常,对于层间排序,为了强的层间耦合强度和弱的钉扎强度,形成了由耦合的涡旋线组成的3D状态。相比之下,由于薄层间耦合强度和强钉扎强度,形成了由解耦的单个煎饼旋涡组成的2D状态。对于层内排序,随着钉扎力的增加,层内结构从晶体演变为布拉格玻璃(BG),涡旋玻璃(VG)和液体状结构。改变涡旋密度,发现层内和层间有序的最初是快速无序的,然后是缓慢的有序过程,这可能是第二峰效应(SPE)的线索。讨论了这种非单调行为的原因。我们的结果总结在层间耦合强度s(m)与钉扎强度f(p)的平面图中的相图中。

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