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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Direct measurements of colloidal hydrodynamics near flat boundaries using oscillating optical tweezers
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Direct measurements of colloidal hydrodynamics near flat boundaries using oscillating optical tweezers

机译:使用振荡光镊直接测量平坦边界附近的胶体流体力学

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We studied the hydrodynamic interaction between a colloidal particle close to flat rigid boundaries and the surrounding fluid using oscillating optical tweezers. A colloidal particle located near walls provides a model system to study the behavior of more complex systems whose boundaries can be modeled as effective walls, such as a blood tube, cell membrane, and capillary tube in bio-MEMS. In this study, we measure the hydrodynamic interaction directly without using the Stokes-Einstein relation. Two different cases are studied: a colloidal sphere near a single flat wall and a colloidal sphere located at the midplane between two flat walls. The colloidal hydrodynamics is measured as a function of the distance between the particle and the walls, and is compared with the theoretical results from well-defined hydrodynamics approximations.
机译:我们使用振荡光学镊子研究了接近平坦刚性边界的胶体颗粒与周围流体之间的流体动力相互作用。位于壁附近的胶体粒子为研究更复杂系统的行为提供了一个模型系统,这些系统的边界可以建模为有效的壁,例如生物MEMS中的血管,细胞膜和毛细管。在这项研究中,我们无需使用Stokes-Einstein关系即可直接测量流体动力相互作用。研究了两种不同的情况:靠近一个平面壁的胶体球和位于两个平面壁之间的中平面的胶体球。胶体流体力学的测量是颗粒与壁之间距离的函数,并与定义明确的流体力学近似的理论结果进行比较。

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