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Interaction of guided light in rib polymer waveguides with dielectrophoretically controlled nanoparticles

机译:肋聚合物波导中的导光与介电电泳控制的纳米粒子的相互作用

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摘要

This work demonstrates an optofluidic system, where dielectrophoretically controlled suspended nanoparticles are used to manipulate the properties of an optical waveguide. This optofluidic device is composed of a multi-mode polymeric rib waveguide and a microfluidic channel as its upper cladding. This channel integrates dielectrophoretic (DEP) microelectrodes and is infiltrated with suspended silica and tungsten trioxide nanoparticles. By applying electrical signals with various intensities and frequencies to the DEP microelectrodes, the nanoparticles can be concentrated close to the waveguide surface significantly altering the optical properties in this region. Depending on the particle refractive indices, concentrations, positions and dimensions, the light remains confined or is scattered into the surrounding media in the microfluidic channel.
机译:这项工作演示了光流体系统,其中使用介电泳控制的悬浮纳米颗粒来操纵光波导的特性。该光流体装置由多模聚合物肋状波导和微流体通道作为其上包层组成。该通道集成了介电泳(DEP)微电极,并被悬浮的二氧化硅和三氧化钨纳米颗粒浸润。通过将具有各种强度和频率的电信号施加到DEP微电极,可以将纳米粒子集中在波导表面附近,从而显着改变该区域的光学特性。取决于粒子的折射率,浓度,位置和尺寸,光会保持受限或散射到微流体通道中的周围介质中。

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