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Simulations and experimental demonstration of three different regimes of optofluidic manipulation

机译:三种不同的替代物流体操纵制度的模拟与实验演示

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摘要

It has been demonstrated that optically controlled microcurrents can be used to capture and move around a variety of microscopic objects ranging from cells and nanowires to whole live worms. Here, we present our findings on several new regimes of optofluidic manipulation that can be engineered using careful design of microcurrents. We theoretically optimize these regimes using COMSOL Multiphysics and present three sets of simulations and corresponding optofluidic experiments. In the first regime, we use local fluid heating to create a microcurrent with asymmetric toroid shape capturing particles in the center. In the second regime, the microcurrent shifts and tilts because external fluid flow is introduced into the microfluidic channel. In the third regime, the whole microfluidic channel is tilted, and the resulting microcurrent projects particles in a fan-like fashion. All three configurations provide interesting opportunities to manipulate small particles in fluid droplets and microfluidic channels. (C) 2021 Optical Society of America
机译:已经证明,光控微电流可以用来捕获和移动各种微观物体,从细胞、纳米线到整个活体蠕虫。在这里,我们展示了我们在几个新的光射流操纵机制上的发现,这些机制可以通过仔细设计微电流来设计。我们使用COMSOL Multiphysics从理论上优化了这些区域,并给出了三组模拟和相应的光射流实验。在第一种情况下,我们使用局部流体加热来产生一个微电流,该电流具有不对称的环形形状,在中心捕获粒子。在第二种情况下,由于外部流体流被引入微流控通道,微电流发生移动和倾斜。在第三种情况下,整个微流控通道倾斜,由此产生的微电流以扇形方式投射粒子。这三种配置都为操纵液滴和微流控通道中的小颗粒提供了有趣的机会。(2021)美国光学学会

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  • 来源
    《Applied optics》 |2021年第3期|共7页
  • 作者单位

    Univ S Florida Dept Chem &

    Biomed Engn 4202 E Fowler Ave ENB118 Tampa FL 33620 USA;

    Univ S Florida Dept Chem &

    Biomed Engn 4202 E Fowler Ave ENB118 Tampa FL 33620 USA;

    Univ S Florida Dept Chem &

    Biomed Engn 4202 E Fowler Ave ENB118 Tampa FL 33620 USA;

    Univ S Florida Dept Chem &

    Biomed Engn 4202 E Fowler Ave ENB118 Tampa FL 33620 USA;

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  • 正文语种 eng
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