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Dynamic microparticle manipulation through light structures generated by a self-calibrated Liquid Crystal on Silicon display

机译:通过硅显示器上的自校准液晶产生的光结构进行动态微粒操纵

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摘要

This paper is devoted to investigating the application of different dynamic light structures generated by a self-calibrated Liquid Crystal on Silicon (LCoS) display for microparticle manipulation. Two major studies based on implementing different DOEs. to thoroughly characterize the LCoS display and to achieve optical-inspired particle manipulation, are proposed, respectively. On the one hand, we dynamically introduced two diffractive lens based patterns (the Billet-lens configuration and the micro-lens array pattern) on the LCoS display, from which the self-calibration of the studied device is implemented. In this case, both the phase-voltage relation and the surface profile were determined and optimized to the optimal performance for microparticle manipulation. On the other hand, we performed the optical manipulation of microparticles by addressing configurable three-dimensional light structures obtained from different phase driven split-lens configurations initiated by the same but optimized LCoS display. Experimental results demonstrated that, by addressing certain phase distributions on the LCoS display, the microparticle can be trapped in the light cones and manipulated by providing certain continuous split-lens configurations.
机译:本文致力于研究由自校正硅上液晶(LCoS)显示器产生的用于微粒操纵的不同动态光结构的应用。基于实施不同DOE的两项主要研究。分别提出了对LCoS显示器进行全面表征和实现光学启发的粒子处理的建议。一方面,我们在LCoS显示器上动态引入了两个基于衍射透镜的图案(坯透镜配置和微透镜阵列图案),从中实现了所研究设备的自校准。在这种情况下,确定了相电压关系和表面轮廓,并对其进行了优化,以达到用于微粒处理的最佳性能。另一方面,我们通过处理可配置的三维光结构来执行微粒的光学操作,该可配置的三维光结构是从由相同但优化的LCoS显示器启动的不同相位驱动的分束透镜配置获得的。实验结果表明,通过解决LCoS显示器上的某些相位分布,可以将微粒捕获在光锥中,并通过提供某些连续的分光镜配置来对其进行操作。

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