涡流
折射
物理
光学
旋涡脱落
领域(数学)
陀飞轮
材料科学
金属
曲面(拓扑)
涡度
作者
Anonymous,Axel J. M. Deenen,Dirk Grundler
摘要
We derive a refraction law for superconducting vortices at superconductor/normal metal (S/N) interfaces that are exposed to tilted magnetic fields. Simulations of the proximity effect confirm this law and reveal vortex trapping for low effective mass. Under transport currents, we find tilt-angle-dependent core displacements due to vortex viscosities differing across the S/N interface and characteristic voltage oscillations due to the modified vortex dynamics. Our results are important for emerging three-dimensional superconductor nanotechnologies. They offer design principles for high-current S/N devices and their interface orientation in an applied field.
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