论文标题

多模光子晶体谐振器的快速分散量

Fast dispersion tailoring of multimode photonic crystal resonators

论文作者

Talenti, Francesco Rinaldo, Wabnitz, Stefan, Ghorbel, Inès, Combrié, Sylvain, Aimone-Giggio, Luca, De Rossi, Alfredo

论文摘要

我们引入了一个数值过程,该过程允许大幅加速多模光子晶体谐振器的设计。具体而言,我们证明了重要类别的纳米级结构的光学响应是通过在整个感兴趣的光谱范围内通过简单的一维模型准确地重现的。该模型可以描述各种锥形光子晶体结构。解决方案更快的数量级,我们的方法可用于优化纳米级腔的某些特性。在这里,我们考虑了纳米梁腔的情况,其中限制是由于其宽度的调节而引起的。优化了宽度的轮廓,以使谐振器分散曲线平移(以使所有模式在频率上均等均等)。该结果与非经典光,光学纳米棒和模式锁定激光源的微型参数发生器特别相关。我们的方法可以很容易地扩展到由多个参数描述的复杂几何形状。

We introduce a numerical procedure which permits to drastically accelerate the design of multimode photonic crystal resonators. Specifically, we demonstrate that the optical response of an important class of such nanoscale structures is reproduced accurately by a simple, one-dimensional model, within the entire spectral range of interest. This model can describe a variety of tapered photonic crystal structures. Orders of magnitude faster to solve, our approach can be used to optimize certain properties of the nanoscale cavity. Here we consider the case of a nanobeam cavity, where the confinement results from the modulation of its width. The profile of the width is optimized, in order to flatten the resonator dispersion profile (so that all modes are equally spaced in frequency). This result is particularly relevant for miniaturizing parametric generators of non-classical light, optical nano-combs and mode-locked laser sources. Our method can be easily extended to complex geometries, described by multiple parameters.

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