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Layer Reduction in Driven 2D-Colloidal Systems through Microchannels

机译:通过微通道驱动2D胶体系统中的层减少

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摘要

The transport behavior of a system of gravitationally driven superparamagnetic colloidal particles is investigated. The motion of the particles through a narrow channel is governed by magnetic dipole interactions, and a layered structure forms parallel to the walls. The arrangement of the particles is perturbed by diffusion and the motion induced by gravity leading to a density gradient along the channel. Our main result is the reduction of the number of layers. Experiments and Brownian dynamics simulations show that this occurs due to the density gradient along the channel.
机译:研究了重力驱动的超顺磁性胶体粒子系统的传输行为。粒子通过狭窄通道的运动受到磁偶极子相互作用的控制,并且形成平行于壁的分层结构。粒子的排列受到扩散的干扰,而重力引起的运动则导致沿通道的密度梯度增加。我们的主要结果是减少了层数。实验和布朗动力学模拟表明,这是由于沿通道的密度梯度而发生的。

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