论文标题

Skyrmion在薄膜系统中固定能量学

Skyrmion pinning energetics in thin film systems

论文作者

Gruber, Raphael, Zázvorka, Jakub, Brems, Maarten A., Rodrigues, Davi R., Dohi, Takaaki, Kerber, Nico, Seng, Boris, Everschor-Sitte, Karin, Virnau, Peter, Kläui, Mathias

论文摘要

Skyrmion动力学和设备的一个关键问题是固定在实际系统中的效果。在实现传统的Skyrmionics设备的挑战时,如果量化和理解真实样品中固定的细节,则利用固定效应可以实现非惯性计算方法。我们证明,使用热天空动力学,我们可以表征样品的固定,并确定空间分辨的能量景观。为了理解固定的机理,我们探测了固定的强大尺寸和形状依赖性。磁显微镜成像表明,与先前研究中的发现相反,对于大型天空,固定固定起源于天际边界,而不是其核心。边界固定受到非常复杂的固定能量格局的强烈影响,该固定能量景观超出了传统的刚性准粒子描述。这会导致复杂的天际畸变,并允许固定位点的动态切换和固定的柔性调整。

A key issue for skyrmion dynamics and devices are pinning effects present in real systems. While posing a challenge for the realization of conventional skyrmionics devices, exploiting pinning effects can enable non-conventional computing approaches if the details of the pinning in real samples are quantified and understood. We demonstrate that using thermal skyrmion dynamics, we can characterize the pinning of a sample and we ascertain the spatially resolved energy landscape. To understand the mechanism of the pinning, we probe the strong skyrmion size and shape dependence of the pinning. Magnetic microscopy imaging demonstrates that in contrast to findings in previous investigations, for large skyrmions the pinning originates at the skyrmion boundary and not at its core. The boundary pinning is strongly influenced by the very complex pinning energy landscape that goes beyond the conventional rigid quasi-particle description. This gives rise to complex skyrmion shape distortions and allows for dynamic switching of pinning sites and flexible tuning of the pinning.

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