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Dynamics of vortex-antivortex matter in nanostructured ferromagnet-superconductor bilayers

机译:纳米结构铁磁体-超导体双层中涡旋-反涡物质的动力学

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摘要

We investigate theoretically the dynamics of vortices and antivortices in a hybrid superconductor magnetic-dot-array bilayer with the nanodots polarized in plane. Our model naturally accounts for creation and annihilation of vortex-antivortex (v-av) pairs and simulate their motion by a (Langevin) molecular-dynamics algorithm. We observed several phenomena resulting from the intricate vortex-antivortex dynamics in this system. In general, as a de-transport current is applied, the steady state corresponds to a cyclic sequence of vortex-antivortex creation, motion and annihilation processes, giving rise to periodic fluctuations of the number of v-av pairs and the induced electric field. Surprisingly, the v-av motion does not follow, in general, the induced Lorentz force direction. Hence, a vortex-guidance effect and the resulting transverse electrical field were observed at zero external magnetic field when the current was applied near certain high-symmetry directions.
机译:我们在理论上研究纳米点在平面内极化的混合超导体磁点阵列双层中的涡旋和反涡旋动力学。我们的模型自然地考虑了涡旋-反涡旋(v-av)对的产生和hil灭,并通过(Langevin)分子动力学算法模拟了它们的运动。我们观察到了该系统中复杂的涡旋-反涡旋动力学产生的几种现象。通常,当施加去运输电流时,稳态对应于涡旋-反涡旋产生,运动和an灭过程的循环序列,从而引起v-av对的数量和感应电场的周期性波动。出人意料的是,v-av运动通常不遵循感应的洛伦兹力方向。因此,当在某些高对称方向附近施加电流时,在零外部磁场下观察到了涡旋引导效应和所产生的横向电场。

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