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Theory of microdroplet and microbubble deformation by Gaussian laser beam

机译:高斯激光束产生的微滴和微泡变形理论

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摘要

The theory for linear deformations of fluid microparticles in a laser beam of Gaussian profile is presented, when the beam focus is at the particle center as in optical trapping. Three different fluid systems are considered: water microdroplet in air, air microbubble in water, and a special oil-emulsion in water system used in experiments with optical deformation of fluid interfaces. We compare interface deformations of the three systems when illuminated by wide (compared to particle radius) and narrow laser beams and analyze differences. Deformations of droplets are radically different from bubbles under otherwise identical conditions, due to the opposite lensing effect (converging and diverging, respectively) of the two; a droplet is deformed far more than a bubble, cetera paribus. Optical contrast is found to be of great importance to the shape obtained when comparing the relatively low-contrast oil-emulsion system to that of water droplets. We finally analyze the dynamics of particle motion when the laser beam is turned on, and compare a static beam to the case of a short pulse. The very different surface tension coefficient implies a very different time scale for dynamics: microseconds for the water-air interface and tens of milliseconds for the oil-emulsion. Surface oscillations of a water microdroplet are found always to be underdamped, while those of the oil-emulsion are overdamped; deformations of a microbubble can be either, depending on physical parameters.
机译:提出了一种高斯分布的激光束中的流体微粒线性变形的理论,当光束聚焦像在光阱中一样位于粒子中心时。考虑了三种不同的流体系统:空气中的水微滴,水中的空气微泡以及用于流体界面光学变形的实验中使用的特殊水乳化液。我们比较了三个系统在被宽(相对于粒子半径)和窄激光束照射时的界面变形,并分析了差异。由于二者相反的透镜作用(分别会聚和发散),在其他条件相同的情况下,液滴的变形与气泡的根本不同。水滴的变形远不止于气泡,更像是鲸蜡小伞。当将相对低对比度的油乳剂体系与水滴的体系进行比较时,发现光学对比度对于获得的形状非常重要。我们最后分析了当激光束打开时粒子运动的动力学,并将静态束与短脉冲的情况进行了比较。非常不同的表面张力系数意味着动力学的时间比例也非常不同:水-空气界面的时间为微秒,油乳液的时间为数十毫秒。人们发现,水微滴的表面振动总是被削弱,而油乳液的表面振动则被过度阻尼。取决于物理参数,微泡的变形可以是任意一种。

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