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Manipulation of micro-particles through optical interference patterns generated by integrated photonic devicest

机译:通过集成光子器件产生的光学干涉图样来操纵微粒

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摘要

Micro-particle transport and switch governed by guided-wave optical interference are presented. The optical interference, occurring in a directional coupler and a multi-mode interferometer made by inverted rib waveguides, results in a specific evanescent field dependent on wavelength. Through a detailed theoretical analysis, the field of induced optical force shows a correlative pattern associated with the evanescent field. Experimental results demonstrate that 10 兪m polystyrene beads are propelled with a trajectory subject to the interference pattern accordingly. By launching different wavelengths, the polystyrene beads can be delivered to different output waveguide ports. Massive micro-particle manipulation is applicable.
机译:提出了由导波光学干涉控制的微粒传输和转换。在定向耦合器和由倒置肋状波导制成的多模干涉仪中发生的光干扰会导致取决于波长的特定渐逝场。通过详细的理论分析,感应光力场显示出与the逝场相关的模式。实验结果表明,以轨迹运动的方式推动了10 µm聚苯乙烯珠的运动,从而产生了干涉图样。通过发射不同的波长,可以将聚苯乙烯珠粒输送到不同的输出波导端口。大规模的微粒处理是适用的。

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