Milne Graham, Rhodes Daniel, MacDonald Michael, Dholakia Kishan
School of Physics and Astronomy, University of St. Andrews, Scotland, UK.
Opt Lett. 2007 May 1;32(9):1144-6. doi: 10.1364/ol.32.001144.
The motion of colloidal particles on a periodic optical potential energy landscape in the presence of an external driving force may result in particle separation. In contrast to recent methods of holographic or interferometric generation of such landscapes, we use an acousto-optic deflector to create two-dimensional landscapes. We present what is believed to be the first experimental realization of fractionation with simultaneous sorting of four different sizes of colloidal microparticle into laterally separated parallel laminar streams.
在存在外部驱动力的情况下,胶体颗粒在周期性光学势能景观上的运动可能导致颗粒分离。与最近用于生成此类景观的全息或干涉测量方法不同,我们使用声光偏转器来创建二维景观。我们展示了据信是首次通过实验实现的分馏,同时将四种不同尺寸的胶体微粒分选到横向分离的平行层流中。