首页> 外文会议>Conference on Photonic Devices and Algorithms for Computing Ⅲ Jul 29-30, 2001, San Diego, USA >Advancements in conductive cladding materials for nonlinear optic polymer based optoelectronic devices
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Advancements in conductive cladding materials for nonlinear optic polymer based optoelectronic devices

机译:非线性光学聚合物基光电器件的导电覆层材料的研究进展

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We have investigated various conductive and non-conductive polymers suitable for use as cladding layers in nonlinear optic (NLO) polymer based opto-electronic devices. Our goal was to maximize the nonlinearity of the core material, minimize the total poling voltage, and minimize the absorption loss. Using a cladding material that is more conductive than the NLO core material, the majority of the applied poling voltage is dropped across the core, realizing a maximum EO coefficient with minimum applied voltage. We found, however, that there are tradeoffs between absorption loss, conductivity, refractive index, materials processability and materials compatibility when using off-the-shelf materials.
机译:我们已经研究了各种导电和非导电聚合物,它们适合用作基于非线性光学(NLO)聚合物的光电器件中的覆层。我们的目标是最大程度地增加芯材的非线性度,最小化总极化电压,并最小化吸收损耗。使用比NLO芯材导电性更高的覆层材料,大部分施加的极化电压会在芯材上下降,从而以最小的施加电压实现最大的EO系数。但是,我们发现,在使用现成的材料时,吸收损耗,电导率,折射率,材料可加工性和材料兼容性之间存在折衷。

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