论文标题
光子晶体微调的傅立叶综合分散工程宽带频率梳子
Fourier synthesis dispersion engineering of photonic crystal microrings for broadband frequency combs
论文作者
论文摘要
微孔谐振器的分散工程对于光频梳应用至关重要,以实现单个梳子牙齿的靶向带宽和功率。但是,常规微型仅显示两个几何自由度 - 宽度和厚度 - 限制了可以控制分散的程度。我们提出了一种技术,我们调整单个共振频率以定制任意分散。使用光子晶体微孔谐振器,该谐振器诱导与环内的两个传播方向耦合,我们研究了基于傅立叶合成的直观设计。在这里,通过与靶向模态频移的傅立叶关系获得所需的光子晶体空间轮廓,其中每个模态移动均基于环的相应有效索引调制确定。在实验上,我们在横向磁极化中演示了几个模式的几种不同的色散曲线。相反,我们发现横向电化需要一个更先进的模型,以解释调制界面处的田间不连续性。最后,我们提出模拟,显示了使用频率合成方法调整任意频率谱谱构件。
Dispersion engineering of microring resonators is crucial for optical frequency comb applications, to achieve targeted bandwidths and powers of individual comb teeth. However, conventional microrings only present two geometric degrees of freedom -- width and thickness -- which limits the degree to which dispersion can be controlled. We present a technique where we tune individual resonance frequencies for arbitrary dispersion tailoring. Using a photonic crystal microring resonator that induces coupling to both directions of propagation within the ring, we investigate an intuitive design based on Fourier synthesis. Here, the desired photonic crystal spatial profile is obtained through a Fourier relationship with the targeted modal frequency shifts, where each modal shift is determined based on the corresponding effective index modulation of the ring. Experimentally, we demonstrate several distinct dispersion profiles over dozens of modes in transverse magnetic polarization. In contrast, we find that the transverse electric polarization requires a more advanced model that accounts for the discontinuity of the field at the modulated interface. Finally, we present simulations showing arbitrary frequency comb spectral envelope tailoring using our Frequency synthesis approach.