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在超导 Pb 薄膜中冻结运动涡旋形成带状磁通图案。

Formation of stripelike flux patterns obtained by freezing kinematic vortices in a superconducting Pb film.

机构信息

Institute for Nanoscale Physics and Chemistry, Nanoscale Superconductivity and Magnetism Pulsed Fields Group, Katholieke Universiteit Leuven, Celestijnenlaan 200 D, B-3001 Leuven, Belgium.

出版信息

Phys Rev Lett. 2010 Jan 8;104(1):017001. doi: 10.1103/PhysRevLett.104.017001. Epub 2010 Jan 7.

Abstract

We demonstrate experimentally and theoretically that the dissipative state of superconducting samples with a periodic array of holes at high current densities consists of flux rivers resulting from a short-range attractive interaction between vortices. This dynamically induced vortex-vortex attraction results from the migration of quasiparticles out of the vortex core (kinematic vortices). We have directly visualized the formation of vortex chains by scanning Hall probe microscopy after freezing the dynamic state by a field cooling procedure at a constant bias current. Similar experiments carried out in a sample without holes show no hint of flux river formation. We shed light on this nonequilibrium phenomena modeled by time-dependent Ginzburg-Landau simulations.

摘要

我们通过实验和理论证明,在高电流密度下具有周期性孔阵列的超导样品的耗散状态由磁通河流组成,这些磁通河流是由于涡旋之间的短程吸引力所致。这种动态诱导的涡旋-涡旋吸引是由于准粒子从涡旋核心(运动涡旋)中迁移出来而产生的。我们通过在恒偏置电流下进行场冷却处理来冻结动态状态,然后通过扫描 Hall 探针显微镜直接观察到涡旋链的形成。在没有孔的样品中进行的类似实验没有显示出形成磁通河流的迹象。我们通过时变的 Ginzburg-Landau 模拟来研究这种非平衡现象。

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