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Topologically protected colloidal transport above a square magnetic lattice

机译:方形磁格上方受拓扑保护的胶体运输

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Download video Transcript View all New J. Phys. video abstracts We theoretically study the motion of magnetic colloidal particles above a magnetic pattern and compare the predictions with Brownian dynamics simulations. The pattern consists of alternating square domains of positive and negative magnetization. The colloidal motion is driven by periodic modulation loops of an external magnetic field. There exist loops that induce topologically protected colloidal transport between two different unit cells of the pattern. The transport is very robust against internal and external perturbations. Theory and simulations are in perfect agreement. Our theory is applicable to other systems with the same symmetry.
机译:下载视频抄本查看全部New J. Phys。视频摘要我们从理论上研究了磁性图案上方磁性胶体颗粒的运动,并将预测结果与布朗动力学仿真进行了比较。图案由正负磁化的交替方畴组成。胶体运动由外部磁场的周期性调制回路驱动。存在在图形的两个不同单位单元之间诱导拓扑受保护的胶体运输的环。传输非常强大,可以抵抗内部和外部干扰。理论和模拟完全吻合。我们的理论适用于其他具有相同对称性的系统。

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