光子晶体中的调制和色散控制

M. Schmidt, A. Petrov, J. Wülbern, M. Eich, U. Huebner, R. Boucher
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引用次数: 1

摘要

我们报道了在含有纳米结构非线性光学聚合物的光子晶体平板波导谐振器中具有亚1v灵敏度的电光调制。这种调制效应基于非中心对称介质中的电子位移极化(波克尔效应),因此固有地比任何其他报道的纳米光子学中的电光调制效应快三个数量级以上。我们还展示了光子晶体波导中极高色散和零色散以及时间延迟的概念。调谐可以通过硅基pc和有机eo材料的混合组合来实现。
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Modulation and dispersion control in photonic crystals
We report on electrooptical modulation with a sub 1Volt sensititivity in a photonic crystal slab waveguide resonator which contains a nanostructured nonlinear optical polymer. This modulation effect is based on the electronic displacement polarization in a noncentrosymmetric medium (Pockels-effect) and is therefore inherently by more than three orders of magnitude faster than any other reported electrooptic modulation effect in nanophotonics. We also show concepts for extremely high and zero dispersion as well as for time delay in photonic crystal waveguides. Tuning can be achieved by hybrid combination of Si-based PCs and organic EO-materials.
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