论文标题

带有分布式bragg反射器的光学波导中的冷冻模式制度

Frozen Mode Regime in an Optical Waveguide With Distributed Bragg Reflector

论文作者

Furman, Nathaniel, Mealy, Tarek, Islam, Md Shafiqul, Vitebskiy, Ilya, Gibson, Ricky, Bedford, Robert, Boyraz, Ozdal, Capolino, Filippo

论文摘要

我们引入了滑行对称的光学波导,该波导在Bloch波数分散关系中表现出固定的拐点(SIP)。 SIP是退化的三阶特殊点(EPD),其中三个Bloch特征模型结合形成了一个所谓的冷冻模式,具有消失的组速度和分化的幅度。我们表明,在周期性结构中的波导之间的搅拌分布的bragg反射器和分布式耦合掺入,可促进SIP的形成,并大大增强了冷冻模式制度的特征。我们通过两种方式证实了SIP的存在:通过观察分散图的平坦度,并使用描述三个特征向量彼此崩溃的共聚参数的结合参数。我们发现,在没有损失的情况下,随着空腔长度的立方功率,SIP处的质量因子和组延迟都会增长。在光学延迟线,传感器和调节器中,冷冻模式机制对于光放大和激光可能非常有吸引力。

We introduce a glide symmetric optical waveguide exhibiting a stationary inflection point (SIP) in the Bloch wavenumber dispersion relation. An SIP is a third order exceptional point of degeneracy (EPD) where three Bloch eigenmodes coalesce to form a so-called frozen mode with vanishing group velocity and diverging amplitude. We show that the incorporation of chirped distributed Bragg reflectors and distributed coupling between waveguides in the periodic structure facilitates the SIP formation and greatly enhances the characteristics of the frozen mode regime. We confirm the existence of an SIP in two ways: by observing the flatness of the dispersion diagram and also by using a coalescence parameter describing the separation of the three eigenvectors collapsing on each other. We find that in the absence of losses, both the quality factor and the group delay at the SIP grow with the cubic power of the cavity length. The frozen mode regime can be very attractive for light amplification and lasing, in optical delay lines, sensors, and modulators.

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