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APS -APS March Meeting 2017 - Event - Vortex in the maze

机译:APS -APS 2017年3月会议-活动-迷宫中的漩涡

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Recent advances in vortex imaging allow for tracing the position of individual vortices with high resolution. By pushing an isolated vortex with a transport current and measuring the linear $ac$ response of the vortex, its trajectory and the associated pinning energy has been found in selected regions of the pinning landscape [1]. Analyzing the full two-dimensional problem, we show that the `broken spring’ effect reported in [1] finds a natural explanation in terms of a vortex escape in the direction transverse to the applied force. Extending the analysis to include high-frequency response data, we show that the pinning potential can be systematically reconstructed. We introduce the Hessian, the determinant of second derivatives, as a new quantity characterizing a two-dimensional pinning landscape. The regions where vortices can assume an equilibrium position under the action of a homogeneous external force, and hence be observed in vortex imaging, involve positive Hessian. We calculate the area of such stable regions for different types of disorder potentials, that provides information on what part of the landscape can be mapped. [1] L. Embon {it et al.}, Sci. Rep. {f 5}, 7598 (2015).
机译:涡旋成像的最新进展允许以高分辨率跟踪单个涡旋的位置。通过用传输电流推动一个孤立的涡旋并测量该涡旋的线性响应,可以在钉扎景观的选定区域中找到其轨迹和相关的钉扎能量[1]。分析完整的二维问题,我们发现[1]中报道的“断裂弹簧”效应在横向于作用力方向的涡旋逸出方面找到了自然的解释。扩展分析以包括高频响应数据,我们表明可以系统地重建钉扎电位。我们介绍了二阶导数的决定因素Hessian,作为表征二维钉扎景观的新量。涡旋在均质外力的作用下可以占据平衡位置的区域,因此在涡旋成像中可以观察到,这些区域包括正黑森州。我们针对不同类型的潜在疾病计算此类稳定区域的面积,从而提供有关可以映射景观的哪个部分的信息。 [1] L. Embon {it等},科学。众议院{f 5},7598(2015)。

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