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Theory for Perfect Transmodal Fabry-Perot Interferometer

机译:完美的跨峰法布里-珀罗干涉仪理论

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摘要

We establish the theory for perfect transmodal Fabry-Perot interferometers that can convert longitudinal modes solely to transverse modes and vice versa, reaching up to 100% efficiency. Two exact conditions are derived for plane mechanical waves: simultaneous constructive interferences of each of two coupled orthogonal modes, and intermodal interference at the entrance and exit sides of the interferometer with specific skew polarizations. Because the multimodal interferences and specific skew motions r>equire unique anisotropic interferometers, they are realized by metamaterials. The observed peak patterns by the transmodal interferometers are similar to those found in the single-mode Fabry-Perot resonance, but multimodality complicates the involved mechanics. We provide their design principle and experimented with a fabricated interferometer. This theory expands the classical Fabry-Perot resonance to the realm of mode-coupled waves, having profound impact on general wave manipulation. The transmodal interferometer could sever as a device to transfer wave energy freely between dissimilar modes.
机译:我们建立了完美的跨峰法布里-珀罗干涉仪的理论,该干涉仪可以将纵向模式仅转换为横向模式,反之亦然,效率最高可达100%。推导出平面机械波的两个精确条件:两个耦合的正交模态中的每一个的同时相长干涉,以及在干涉仪的入口和出口侧具有特定偏极化的共模干涉。由于多模态干涉和特定偏斜运动具有独特的各向异性干涉仪,因此它们是由超材料实现的。跨模态干涉仪观察到的峰型与单模Fabry-Perot共振中发现的峰型相似,但多峰性使所涉及的机械复杂化。我们提供了他们的设计原理,并使用了人造干涉仪进行了实验。该理论将经典的Fabry-Perot共振扩展到模式耦合波的领域,对一般的波操作产生了深远的影响。跨模态干涉仪可以作为一种在不同模式之间自由传递波能的装置。

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