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Theory and experiment on particle trapping and manipulation via optothermally generated bubbles

机译:光热产生的气泡捕集与控制颗粒的理论与实验

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摘要

We present a theoretical analysis and experimental demonstration of particle trapping and manipulation around optothermally generated bubbles. We show that a particle located within 500 μm of a surface bubble can be attracted towards a bubble by the drag force resulting from a convective flow. Once the particle comes in contact with the bubble’s surface, a balance between surface tension forces and pressure forces traps the particle on the bubble surface, allowing the particle to move with the bubble without detaching. The proposed mechanism is confirmed by computational fluid dynamics simulations, force calculations, and experiments. Based on this mechanism, we experimentally demonstrated a novel approach for manipulating microparticles via optothermally generated bubbles. Using this approach, randomly distributed microparticles were effectively collected and carried to predefined locations. Single particles were also manipulated along prescribed trajectories. This bubble-based particle trapping and manipulation technique can be useful in applications such as micro assembly, particle concentration, and high-precision particle separation.
机译:我们提出了围绕光热产生的气泡进行颗粒捕集和处理的理论分析和实验演示。我们表明,位于对流表面的阻力可将位于表面气泡500μm内的粒子吸引到气泡。粒子与气泡表面接触后,表面张力和压力之间的平衡就会将粒子捕获在气泡表面上,从而使粒子随气泡移动而不会脱离。通过计算流体动力学仿真,力计算和实验证实了所提出的机制。基于这种机制,我们实验证明了一种通过光热产生的气泡处理微粒的新颖方法。使用这种方法,可以有效地收集随机分布的微粒并将其运送到预定位置。还沿规定的轨迹操纵单个粒子。这种基于气泡的粒子捕获和处理技术可用于微装配,粒子浓缩和高精度粒子分离等应用中。

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