首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >An ultra-compact multimode interference coupler as an optimum all-optical switch based on nonlinear modal propagation analysis
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An ultra-compact multimode interference coupler as an optimum all-optical switch based on nonlinear modal propagation analysis

机译:基于非线性模态传播分析的作为最佳全光开关的超紧凑型多模干涉耦合器

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摘要

This paper proposes modal propagation analysis (MPA) as an advantageous approach to studying an all-optical switch based on a small-dimension multimode interference (MMI) coupler at the threshold of the nonlinear regime. The finite-difference method is applied as a rigorous numerical method of solving the nonlinear modal equations and measuring the modal propagation constant. The characterizations of two initial modes demonstrate the changes that are induced by nonlinear effects, such as the conversion of a sinusoidal profile to a Gaussian profile in the direction of propagation, the high oscillation of the induced phase, and a variable shift in wavelength. Furthermore, all of the abovementioned changes manifest differently for each mode. The Gaussian profiles of guided modes accompanied by other observed phenomena lead to more efficient interferences among the modes to demonstrate switching applications at a small MMI length scale. The procedure for designing an optimum switch requires the implementation of a series of several studies of the switching operation based on related parameters, such as the contrast ratio between the ON and OFF outputs, which is called the switching performance gain (SPG); this parameter is used to optimize the switch via the output width, and the insertion loss is used in the same manner. The results indicate the efficiency of the approach at an MMI length of a few micrometers and indicate that SPG is sensitive to both output width and input intensity. To our knowledge, this is the first study to demonstrate power switching using nonlinear modal propagation analysis in the low-intensity nonlinear regime in a configuration created by guided-mode interferences.
机译:本文提出模态传播分析(MPA)作为研究基于非线性域阈值的小尺寸多模干涉(MMI)耦合器的全光开关的一种有利方法。有限差分法被用作求解非线性模态方程并测量模态传播常数的严格数值方法。两种初始模式的表征证明了由非线性效应引起的变化,例如在传播方向上正弦曲线向高斯曲线的转换,感应相的高振荡以及波长的可变位移。此外,所有上述变化对于每种模式都有不同的体现。引导模式的高斯分布以及其他观察到的现象导致模式之间更有效的干扰,从而证明了在小MMI长度尺度下的切换应用。设计最佳开关的过程需要根据相关参数(例如,ON和OFF输出之间的对比度,称为开关性能增益(SPG))对开关操作进行一系列的研究。此参数用于通过输出宽度优化开关,插入损耗的使用方式相同。结果表明该方法在MMI长度为几微米的情况下是有效的,并且表明SPG对输出宽度和输入强度均敏感。就我们所知,这是首次研究在导光模式干扰产生的配置下,在低强度非线性状态下使用非线性模态传播分析进行功率切换的研究。

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