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Dynamic measurements and simulations of airborne picolitre-droplet coalescence in holographic optical tweezers

机译:全息光镊中机载微滴液滴合并的动态测量和模拟

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摘要

We report studies of the coalescence of pairs of picolitre aerosol droplets manipulated with holographic optical tweezers, probing the shape relaxation dynamics following coalescence by simultaneously monitoring the intensity of elastic backscattered light (EBL) from the trapping laser beam (time resolution on the order of 100 ns) while recording high frame rate camera images (time resolution 10s). The goals of this work are to: resolve the dynamics of droplet coalescence in holographic optical traps; assign the origin of key features in the time-dependent EBL intensity; and validate the use of the EBL alone to precisely determine droplet surface tension and viscosity. For low viscosity droplets, two sequential processes are evident: binary coalescence first results from the overlap of the optical traps on the time scale of microseconds followed by the recapture of the composite droplet in an optical trap on the time scale of milliseconds. As droplet viscosity increases, the relaxation in droplet shape eventually occurs on the same time scale as recapture, resulting in a convoluted evolution of the EBL intensity that inhibits quantitative determination of the relaxation time scale. Droplet coalescence was simulated using a computational framework to validate both experimental approaches. The results indicate that time-dependent monitoring of droplet shape from the EBL intensity allows for robust determination of properties such as surface tension and viscosity. Finally, the potential of high frame rate imaging to examine the coalescence of dissimilar viscosity droplets is discussed.
机译:我们报告了用全息光学镊子操纵的成对的微微克气溶胶液滴的聚结研究,通过同时监测捕获的激光束的弹性反向散射光(EBL)的强度来探查聚结后的形状弛豫动力学(时间分辨率约为100) ns),同时记录高帧速相机图像(时间分辨率<10s)。这项工作的目的是:解决全息光阱中液滴聚结的动力学;在随时间变化的EBL强度中分配关键特征的起源;并验证仅使用EBL即可精确确定液滴表面张力和粘度。对于低粘度液滴,两个连续的过程是显而易见的:二进制聚结首先是由于光阱的重叠在微秒的时间尺度上发生的,然后是复合液滴在光阱中在毫秒的时间尺度上的重新捕获。随着液滴粘度的增加,液滴形状的松弛最终会在与重新捕获相同的时间尺度上发生,导致EBL强度的旋绕演变,从而阻碍了松弛时间尺度的定量确定。使用计算框架模拟液滴聚结以验证两种实验方法。结果表明,根据EBL强度对液滴形状进行时间相关的监测可以可靠地确定表面张力和粘度等特性。最后,讨论了高帧频成像技术检查异种粘度液滴聚结的潜力。

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