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Magnetic Microstructures for Control of Brownian Motion and Microparticle Transport

机译:用于控制布朗运动和微粒传输的磁性微结构

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摘要

A platform of microscopic magnetic wires and discrete bits of disks patterned on a surface offers dynamic control over the motion of fluid borne magnetic particles. The energy landscape associated with the local domain wall field originating from zigzag wire vertices is tuned by weak external fields to vary Brownian trajectories between strong confinements and delocalized spatial excursions. The corresponding spatial coverage of single particle trajectories allows the energy profile of such a magnetic trap to be mapped. Remote manipulation and guided transport of these objects across various opaque and transparent rigid surfaces as well as flexible films supporting discrete magnetic disks is presented.
机译:在表面上构图的微观电磁线和磁盘离散位的平台提供了对流体磁性颗粒运动的动态控制。与源于之字形线顶点的局部畴壁场相关的能量景观通过弱外部场进行调整,以在强约束和局域空间偏移之间改变布朗轨迹。单粒子轨迹的相应空间覆盖范围允许映射此类磁阱的能量分布。介绍了这些对象在各种不透明和透明的刚性表面以及支持离散磁盘的柔性膜上的远程操纵和引导运输。

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