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Ultrafast Optical Arbitrary-Order Differentiators Based on Apodized Long-Period Gratings

机译:基于变迹长周期光栅的超快光学任意阶微分器

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We propose a novel, optimized design for arbitrary-order optical differentiation based on a uniform-period especially apodized long-period fiber or waveguide grating (LPG) operated in transmission. We show that the LPG solution can be optimized to utilize the entire grating resonance bandwidth for optical differentiation by properly customizing the LPG apodization profile through a discrete inverse-scattering grating synthesis technique. This strategy leads to a significantly increased processing speed and a maximized energetic efficiency as compared with previous unapodized LPG-based optical differentiator designs. As an example, optimized first-, second-, and third-order optical differentiators are designed using apodized LPGs implemented in standard single-mode fiber (SMF). The designed passive devices are practically feasible and offer an unprecedented operation bandwidth of 12 THz, which is capable of accurately processing time features as short as $sim$ 100 fs, and an optimal energetic efficiency, which reaches a peak power spectral response of nearly 100% within their operation band.
机译:我们提出一种新颖的,优化的设计,用于在传输过程中基于均匀周期特别是变迹的长周期光纤或波导光栅(LPG)进行任意阶光学微分。我们表明,通过适当地通过离散逆散射光栅合成技术自定义LPG切趾轮廓,可以优化LPG解决方案以利用整个光栅共振带宽进行光学区分。与以前的未切趾的基于LPG的光学微分器设计相比,此策略可显着提高处理速度并提高能量效率。例如,使用在标准单模光纤(SMF)中实现的切趾LPG设计优化的一阶,二阶和三阶光学微分器。设计的无源器件实际上可行,并提供前所未有的12 THz的工作带宽,能够精确处理短至$ sim $ 100 fs的时间特征,并具有最佳的能量效率,可达到近100的峰值功率谱响应%在其操作范围内。

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