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Theoretical Study of Optical Rectification at Radio Frequencies in a Slot Waveguide

机译:缝隙波导中无线电频率的光学整流的理论研究

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We present a theoretical study of optical rectification (OR) at radio frequencies (RF). OR is a process by which a second-order nonlinear optical material can directly convert an optical field into an RF electric field. The combination of high-index nanoscale waveguides and new optical materials allow this effect to be greatly enhanced. We develop a lumped-element equivalent circuit model for the OR process from first principles, which enables the power conversion and bandwidth of the effect to be predicted. We use our model to predict that significant amounts of RF power should be obtainable from a slot waveguide device clad in a nonlinear optical polymer. Based on our model, we estimate that OR-based photodetectors may be possible, operating at speeds of 400 GHz, with responsivities on the order of 9 mA/W.
机译:我们提出了在射频(RF)上进行光学整流(OR)的理论研究。 OR是一种过程,通过该过程,二阶非线性光学材料可以将光场直接转换为RF电场。高折射率纳米级波导和新型光学材料的结合可以大大增强这种效果。我们从第一个原理为OR过程开发了集总元件等效电路模型,该模型使功率转换和效果的带宽得以预测。我们使用我们的模型来预测,应该可以从包覆在非线性光学聚合物中的缝隙波导器件中获得大量的RF功率。根据我们的模型,我们估计基于OR的光电探测器可能是可行的,其工作速度为400 GHz,响应度约为9 mA / W。

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