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Supersymmetry-Inspired Non-Hermitian Optical Couplers

机译:受超对称启发的非赫米特光耦合器

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摘要

Supersymmetry has been shown to provide a systematic and effective framework for generating classes of isospectral optical structures featuring perfectly-phase-matched modes, with the exception of one (fundamental) mode which can be removed. More recently, this approach has been extended to non-Hermitian scenarios characterized by spatially-modulated distributions of optical loss and gain, in order to allow the removal of higher-order modes as well. In this paper, we apply this approach to the design of non-Hermitian optical couplers with higher-order mode-selection functionalities, with potential applications to mode-division multiplexing in optical links. In particular, we highlight the critical role of the coupling between non-Hermitian optical waveguides, which generally induces a phase transition to a complex eigenspectrum, thereby hindering the targeted mode-selection functionality. With the specific example of an optical coupler that selects the second-order mode of a given waveguide, we illustrate the aforementioned limitations and propose possible strategies to overcome them, bearing in mind the practical feasibility of the gain levels required.
机译:超对称性已被证明可以为生成具有理想相位匹配模式的等光谱光学结构类别提供系统且有效的框架,但可以删除的一种(基本)模式除外。最近,该方法已扩展到以光损耗和增益的空间调制分布为特征的非赫米特场景,以便也可以去除高阶模。在本文中,我们将这种方法应用于具有高阶模式选择功能的非Hermitian光耦合器的设计,并将其潜在地应用于光链路中的模式分割复用。特别是,我们重点介绍了非赫密特光波导之间耦合的关键作用,该耦合通常会引起向复杂本征谱的相变,从而阻碍目标模式选择功能。对于选择给定波导的二阶模式的光耦合器的特定示例,我们牢记了所需增益水平的实际可行性,说明了上述限制并提出了克服这些限制的可能策略。

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