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Plasmonic nanoantennas as integrated coherent perfect absorbers on SOI waveguides for modulators and all-optical switches

机译:等离子体纳米天线作为sOI波导上的集成相干完美吸收器,用于调制器和全光开关

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摘要

The performance of plasmonic nanoantenna structures on top of SOI wire waveguides as coherent perfect absorbers for modulators and all-optical switches is explored. The absorption, scattering, reflection and transmission spectra of gold and aluminum nanoantenna-loaded waveguides were calculated by means of 3D finite-difference time-domain simulations for single waves propagating along the waveguide, as well as for standing wave scenarios composed from two counterpropagating waves. The investigated configurations showed losses of roughly 1% and extinction ratios greater than 25 dB for modulator and switching applications, as well as plasmon effects such as strong field enhancement and localization in the nanoantenna region. The proposed plasmonic coherent perfect absorbers can be utilized for ultracompact all-optical switches in coherent networks as well as modulators and can find applications in sensing or in increasing nonlinear effects.
机译:探索了SOI导线波导顶部的等离激元纳米天线结构作为调制器和全光开关的相干完美吸收体的性能。借助3D有限差分时域模拟,对沿波导传播的单波以及由两个反向传播的波构成的驻波场景,计算了载有金和铝纳米天线的波导的吸收,散射,反射和透射光谱。 。对于调制器和开关应用,所研究的配置显示出大约1%的损耗和大于25 dB的消光比,以及等离激元效应,例如强电场增强和纳米天线区域中的定位。所提出的等离激元相干完美吸收体可用于相干网络中的超紧凑型全光开关以及调制器,并可在传感或增加非线性效应中找到应用。

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