The response of an individual vortex to local mechanical contact

A. Kremen, S. Wissberg, Y. Shperber, B. Kalisky
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引用次数: 0

Abstract

Abstract Recently we reported a new way to manipulate vortices in thin superconducting films by local mechanical contact without magnetic field, current or altering the pinning landscape [1]. We use scanning superconducting interference device (SQUID) microscopy to image the vortices, and a piezo element to push the tip of a silicon chip into contact with the sample. As a result of the stress applied at the contact point, vortices in the proximity of the contact point change their location. Here we study the characteristics of this vortex manipulation, by following the response of individual vortices to single contact events. Mechanical manipulation of vortices provides local view of the interaction between strain and nanomagnetic objects, as well as controllable, effective, localized, and reproducible manipulation technique.
单个涡旋对局部机械接触的响应
最近,我们报道了一种新的方法,通过局部机械接触来操纵超导薄膜中的涡流,而不需要磁场、电流或改变钉钉景观[1]。我们使用扫描超导干涉装置(SQUID)显微镜对涡旋进行成像,并使用压电元件推动硅片尖端与样品接触。由于在接触点处施加的应力,在接触点附近的涡流改变了它们的位置。本文通过跟踪单个涡对单个接触事件的响应,研究了这种涡操纵的特性。涡旋的机械操作提供了应变和纳米磁性物体之间相互作用的局部视图,以及可控、有效、局部和可重复的操作技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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