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Scanning SQUID Study of Vortex Manipulation by Local Contact

机译:局部接触涡旋操纵的SQUID扫描研究

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摘要

Local, deterministic manipulation of individual vortices in type 2 superconductors is challenging. The ability to control the position of individual vortices is necessary in order to study how vortices interact with each other, with the lattice, and with other magnetic objects. Here, we present a protocol for vortex manipulation in thin superconducting films by local contact, without applying current or magnetic field. Vortices are imaged using a scanning superconducting quantum interference device (SQUID), and vertical stress is applied to the sample by pushing the tip of a silicon chip into the sample, using a piezoelectric element. Vortices are moved by tapping the sample or sweeping it with the silicon tip. Our method allows for effective manipulation of individual vortices, without damaging the film or affecting its topography. We demonstrate how vortices were relocated to distances of up to 0.8 mm. The vortices remained stable at their new location up to five days. With this method, we can control vortices and move them to form complex configurations. This technique for vortex manipulation could also be implemented in applications such as vortex based logic devices.
机译:对2型超导体中的单个涡旋进行局部确定性操作具有挑战性。为了研究涡流如何彼此相互作用,与晶格以及与其他磁性物体相互作用,控制单个涡旋位置的能力是必需的。在这里,我们提出了一种在不施加电流或磁场的情况下通过局部接触在超导薄膜中进行涡流处理的协议。使用扫描超导量子干涉仪(SQUID)对涡旋成像,并使用压电元件将硅芯片的尖端推入样品中,从而对样品施加垂直应力。通过敲击样品或用硅尖端扫掠来移动涡流。我们的方法可以有效控制单个涡流,而不会损坏胶片或影响其形貌。我们演示了如何将涡旋重新定位到不超过0.8毫米的距离。涡流在新的位置保持稳定长达五天。使用这种方法,我们可以控制涡流并将其移动以形成复杂的配置。这种用于涡旋操纵的技术也可以在诸如基于涡旋的逻辑设备之类的应用中实现。

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