论文标题

在强运输电流下,在磁场中具有亚微均匀性的磁场中超导体纳米膜的拓扑过渡

Topological transitions in superconductor nanomembranes in a magnetic field with submicron inhomogeneity under a strong transport current

论文作者

Rezaev, R. O., Smirnova, E. I., Schmidt, O. G., Fomin, V. M.

论文摘要

在强运输电流下,磁场中的磁场上的超导体纳米膜中的诱导电压显示出磁场的一定间隔的脉冲。它是宽相滑域的表现。伴随相滑效应的拓扑转变包括两个新的环路,它们连接了两个超导筛选电流区域的弱超导电流,在发生漩涡链动力学的情况下是断开连接的。在相滑域的中间,超导顺序参数的快速动力学包括脱钩自发成核的涡流 - 抗差对,随后在相反方向上进行涡流和抗替代的运动,随后是抗逆物和抗生素和涡旋对均与邻接对。可以通过直接施加到平面膜上的磁场或使用高级纳米结构的磁场,例如卷起技术,聚焦离子束沉积或超导材料涂层碳纳米管。如果施加的磁场与微管的轴正交,该轴沿方位角沿着传输电流携带的传输电流,则相滑状态的特征在于半管中的涡旋 - 15 s对10e-15 s对10E-15 s对10e-15 s的涡流寿命。相滑动力学决定了具有多个超导筛选电流的多个断开环的纳米结构中的电压磁场和电流特性。

Under a strong transport current, the induced voltage in superconductor nanomembranes in a magnetic field with submicron inhomogeneity shows a pulse on a certain interval of the magnetic field. It is a manifestation of a wide phase-slip domain. The topological transition accompanying the phase-slip effect consists in the occurrence of two new loops of weak superconducting currents connecting two regions of superconducting screening currents, which are disconnected in case of vortex-chain dynamics. In the middle of the phase-slip domain, rapid dynamics of the superconducting order parameter consists in decoupling of a spontaneously nucleated vortex-antivortex pair, subsequent motion of a vortex and an antivortex in the opposite directions followed by their annihilation with an antivortex and a vortex from the adjacent pairs. The submicron-scale inhomogeneity of the magnetic field can be achieved through a direct patterning of the magnetic field applied to a planar membrane or using advanced nanostructuring, such as roll-up technology, focused ion-beam deposition or coating carbon nanotubes by superconducting materials. If the applied magnetic field is orthogonal to the axis of a microtube, which carries transport current in the azimuthal direction, the phase-slip regime is characterized by the vortex-antivortex lifetime of 10E-15 s versus 10E-12 s for disconnected vortex dynamics in the half-tubes. The phase-slip dynamics determines the voltage-magnetic field and voltage-current characteristics in nanoarchitectures with multiple disconnected loops of superconducting screening currents.

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