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Evaluation of dispersive Bragg gratings (BG) structures for the processing of RF signals with large time delays and bandwidths

机译:具有大时间延迟和带宽的分散布拉格光栅(BG)结构的分散布拉格光栅(BG)结构

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The applications of microwave optoelectronics are extremely large since they extend from the Radio-over-Fibre to the Homeland security and defence systems. Then, the improved maturity of the optoelectronic components operating up to 40GHz permit to consider new optical processing functions (filtering, beamforming, ...) which can operate over very wideband microwave analogue signals. Specific performances are required which imply optical delay lines able to exhibit large Time-Bandwidth product values. It is proposed to evaluate slow light approach through highly dispersive structures based on either uniform or chirped Bragg Gratings. Therefore, we highlight the impact of the major parameters of such structures: index modulation depth, grating length, grating period, chirp coefficient and demonstrate the high potentiality of Bragg Grating for Large RF signals bandwidth processing under slow-light propagation.
机译:微波光电子的应用极大,因为它们从无线电过光延伸到国土安全和防御系统。然后,操作高达40GHz的光电分量的提高到期允许考虑新的光学处理功能(过滤,波束成形,......),其可以在非常宽带微波模拟信号上运行。需要具体的性能,这意味着能够表现出大的时间带宽产品值的光学延迟线。建议通过基于均匀或啁啾布拉格光栅来评估慢光法通过高度分散结构。因此,我们突出了这种结构的主要参数的影响:指数调制深度,光栅长度,光栅周期,啁啾系数,并证明了在慢速传播下大型RF信号带宽处理的布拉格光栅的高潜力。

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