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Rectifying transport of a mixture of Brownian particles on an asymmetric periodic optical potential

机译:在不对称的周期光学电位上整流褐色粒子混合物的运输

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Optical micro-manipulation has seen a resurgence of interest in recent years, which has been due in part to new application areas and the use of tailored forms of light beam. In this paper, experimental observations of fluctuation-driven transport of silica microspheres within a two-dimensional optical potential of circular symmetry are observed. The potential is created by a Bessel light beam. The optical field is tailored to break the symmetry and create a static tilted periodic (washboard) potential. Transitions between locked and running modes may be observed. The running mode manifests itself by rapid accumulation of particles at the beam centre. We discuss what happens with mixtures of particles in such an optical potential.
机译:近年来,光学微操纵已经看到兴趣的复苏,这是部分归因于新的应用领域以及使用量身定制的光束。在本文中,观察了在圆对称性的二维光学电位内二氧化硅微球的波动驱动传输的实验观察。电位由贝塞尔光束产生。光学场定制以打破对称性并产生静态倾斜周期(搓板)电位。可以观察到锁定和运行模式之间的转换。运行模式通过快速积聚光束中心的粒子累积而表现出来。我们讨论在这种光学电位中的颗粒混合物发生的情况。

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