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Microfluidic manipulation of magnetic flux domains in type-I superconductors: droplet formation fusion and fission

机译:I型超导体中磁通量域的微流控:液滴形成融合和裂变

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摘要

The magnetic flux domains in the intermediate state of type-I superconductors are known to resemble fluid droplets, and their dynamics in applied electric current is often cartooned as a “dripping faucet”. Here we show, using the time-depended Ginzburg-Landau simulations, that microfluidic principles hold also for the determination of the size of the magnetic flux-droplet as a function of the applied current, as well as for the merger or splitting of those droplets in the presence of the nanoengineered obstacles for droplet motion. Differently from fluids, the flux-droplets in superconductors are quantized and dissipative objects, and their pinning/depinning, nucleation, and splitting occur in a discretized form, all traceable in the voltage measured across the sample. At larger applied currents, we demonstrate how obstacles can cause branching of laminar flux streams or their transformation into mobile droplets, as readily observed in experiments.
机译:众所周知,I型超导体处于中间状态时的磁通域类似于液滴,它们在外加电流中的动力学通常被卡通化为“滴水龙头”。在此,我们使用时变的Ginzburg-Landau模拟表明,微流体原理也适用于确定磁通量液滴的大小与所施加电流的关系,以及这些液滴的合并或分裂在存在纳米工程的液滴运动障碍物的情况下。与流体不同,超导体中的磁通量液滴是量化和耗散的对象,它们的钉扎/钉扎,成核和分裂以离散形式发生,所有这些都可以在整个样品的测量电压中找到。如在实验中容易观察到的,在更大的施加电流下,我们证明了障碍物如何引起层流通量的分支或将其转化为可移动的液滴。

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