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Manipulation of micro-particles through optical interference patterns generated by integrated photonic devices
Journal article   Peer reviewed

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

Li-Chung Hsu, Te-Chang Chen, Yao-Tsu Yang, Chieh-Yang Huang, Da-Wei Shen, Ya-Tzu Chen and Ming-Chang M. Lee
Lab on a Chip - Miniaturisation for Chemistry and Biology, Vol.13(6), pp.1151-1155
21/03/2013

Abstract

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 μm 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. © 2013 The Royal Society of Chemistry.

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