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Particle separation induced by triangle obstacles in a straight channel

机译:三角形障碍物在直沟道中引起的颗粒分离

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Efficient separation of particles has ever-growing importance in both fundamental research and nanotechnological applications. However, such particles usually suffer from some fluctuations from external surroundings and outside intervention from unknown directions. Here, we numerically investigate the transport of Brownian particles in a straight channel with regular arrays of equilateral triangle obstacles. The particles can be rectified by the triangle obstacles under the action of an oscillating (square wave) force. At the given amplitude and frequency of the oscillating force, the transport is sensitively dependent on the force direction and particle size. In the cases of longitudinal and transversal oscillating force, the particles with different sizes exhibit different transport behaviors. Interestingly, under a constant force in the longitudinal direction, the phenomenon of particle separation is observed, where the particles with different radii will move in different directions. Furthermore, we also study the transport of Brownian particles driven by a tilt oscillating force. By choosing proper force directions, we can observe the gating phenomenon and transport reversal. Under different driving conditions, we can separate particles of different sizes and make them move in opposite directions.
机译:在基础研究和纳米技术应用中,颗粒的有效分离具有越来越重要的重要性。然而,这种颗粒通常遭受来自外部周围环境的一些波动和未知方向的外部介入。在这里,我们在具有常规等边三角形障碍物的直线阵列中进行数值研究褐色颗粒的运输。在振荡(方波)力的作用下,颗粒可以通过三角形障碍物进行整流。在给定的振幅和振荡力的频率下,传输敏感地取决于力方向和粒度。在纵向和横向振荡力的情况下,具有不同尺寸的颗粒具有不同的运输行为。有趣的是,在纵向的恒定力下,观察到颗粒分离的现象,其中具有不同的半径的颗粒将以不同的方向移动。此外,我们还研究由倾斜振荡力驱动的布朗粒子的运输。通过选择适当的力方向,我们可以观察门控现象和运输逆转。在不同的驾驶条件下,我们可以将不同尺寸的粒子分开并使它们在相反的方向上移动。

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