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手性晶格扭矩诱导的刚性斯格明子微晶的滚动运动。

Rolling Motion of Rigid Skyrmion Crystallites Induced by Chiral Lattice Torque.

作者信息

Jin Haonan, Chen Jingyi, van der Laan Gerrit, Hesjedal Thorsten, Liu Yizhou, Zhang Shilei

机构信息

School of Physical Science and Technology, ShanghaiTech University, Shanghai 200031, China.

ShanghaiTech Laboratory for Topological Physics, ShanghaiTech University, Shanghai 200031, China.

出版信息

Nano Lett. 2024 Oct 2;24(39):12226-12232. doi: 10.1021/acs.nanolett.4c03336. Epub 2024 Sep 19.

Abstract

Magnetic skyrmions are topologically protected spin textures with emergent particle-like behaviors. Their dynamics under external stimuli is of great interest and importance for topological physics and spintronics applications alike. So far, skyrmions are only found to move linearly in response to a linear drive, following the conventional model treating them as isolated quasiparticles. Here, by performing time and spatially resolved resonant elastic X-ray scattering of the insulating chiral magnet CuOSeO, we show that for finite-sized skyrmion crystallites, a purely linear temperature gradient not only propels the skyrmions but also induces continuous rotational motion through a chiral lattice torque. Consequently, a skyrmion crystallite undergoes a rolling motion under a small gradient, while both the rolling speed and the rotational sense can be controlled. Our findings offer a new degree of freedom for manipulating these quasiparticles toward device applications and underscore the fundamental phase difference between the condensed skyrmion lattice and isolated skyrmions.

摘要

磁斯格明子是具有涌现类粒子行为的拓扑保护自旋纹理。它们在外部刺激下的动力学对于拓扑物理和自旋电子学应用都极具吸引力且至关重要。到目前为止,仅发现斯格明子会按照将它们视为孤立准粒子的传统模型,响应线性驱动而线性移动。在这里,通过对绝缘手性磁体CuOSeO进行时间和空间分辨的共振弹性X射线散射,我们表明,对于有限尺寸的斯格明子微晶,纯粹的线性温度梯度不仅会推动斯格明子,还会通过手性晶格转矩诱导连续的旋转运动。因此,一个斯格明子微晶在小梯度下会经历滚动运动,同时滚动速度和旋转方向都可以控制。我们的发现为朝着器件应用操纵这些准粒子提供了一个新的自由度,并突出了凝聚态斯格明子晶格与孤立斯格明子之间的基本相位差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8159/11450986/e9295cd9127d/nl4c03336_0001.jpg

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