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Holographic optical assembly and photopolymerized joining of planar microspheres

机译:平面微球的全息光学组装和光聚合连接

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The aim of this research is to demonstrate a holographically driven photopolymerization process for joining colloidal particles to create planar microstructures fixed to a substrate, which can be monitored with real-time measurement. Holographic optical tweezers (HOT) have been used to arrange arrays of microparticles prior to this work; here we introduce a new photopolymerization process for rapidly joining simultaneously handled microspheres in a plane. Additionally, we demonstrate a new process control technique for efficiently identifying when particles have been successfully joined by measuring a sufficient reduction in the particles' Brownian motion. This technique and our demonstrated joining approach enable HOT technology to take critical steps toward automated additive fabrication of microstructures. (C) 2016 Optical Society of America
机译:这项研究的目的是演示一种全息驱动的光聚合工艺,该工艺用于连接胶体颗粒以创建固定在基板上的平面微结构,可以通过实时测量对其进行监视。在这项工作之前,全息光镊(HOT)已用于排列微粒阵列。在这里,我们介绍了一种新的光聚合工艺,该工艺可将同时处理的微球快速连接到平面中。此外,我们演示了一种新的过程控制技术,该技术可通过测量粒子的布朗运动的充分减小来有效地识别何时已成功加入粒子。这项技术和我们证明的连接方法使HOT技术能够朝着微结构的自动化增材制造迈出关键步骤。 (C)2016美国眼镜学会

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