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Sorting of mesoscopic particles driven through periodic potential landscapes

机译:通过周期性势场驱动的介观粒子的分类

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Sorting of colloidal particles of different sizes is of importance in the transport and delivery of such particles in biological, materials science, and other technological contexts. A successful methodology involves the flow of a mixture of particles over designer surfaces presenting a periodic array of traps (optical tweezers) or microfabricated obstacles. The trajectories of the particles over these surfaces deviate from the direction of flow as the particles are attracted (traps) or repelled (obstacles) by the features of the landscape. The deviation of the particles from that of the flow depends on particle size (or on some other particle characteristic) and hence the particles can be sorted according to trajectory direction. On the basis of extensive numerical simulations, we present a unified view of these methodologies and discuss the effects of system parameters such as the magnitude and direction of the flow on the sorting efficacy.
机译:在生物,材料科学和其他技术环境中,不同大小的胶体颗粒的分选对于此类颗粒的运输和递送很重要。一个成功的方法论是,使颗粒混合物流过设计器表面,并呈现出周期性排列的陷阱(光学镊子)或微加工障碍物。这些粒子在这些表面上的轨迹偏离流动的方向,因为粒子被景观特征吸引(捕获)或被排斥(障碍)。颗粒与流的偏离取决于颗粒大小(或某些其他颗粒特性),因此可以根据轨迹方向对颗粒进行分类。在广泛的数值模拟的基础上,我们给出了这些方法的统一视图,并讨论了系统参数(例如流量的大小和方向)对分选效率的影响。

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