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Waveguide sub-wavelength structures: a review of principles and applications

机译:波导亚波长结构:原理和应用综述

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摘要

Periodic structures with a sub-wavelength pitch have been known since Hertz conducted his first experiments on the polarization of electromagnetic waves. While the use of these structures in waveguide optics was proposed in the 1990s, it has been with the more recent developments of silicon photonics and high-precision lithography techniques that sub-wavelength structures have found widespread application in the field of photonics. This review first provides an introduction to the physics of sub-wavelength structures. An overview of the applications of sub-wavelength structures is then given including: anti-reflective coatings, polarization rotators, high-efficiency fiber-chip couplers, spectrometers, high-reflectivity mirrors, athermal waveguides, multimode interference couplers, and dispersion engineered, ultra-broadband waveguide couplers among others. Particular attention is paid to providing insight into the design strategies for these devices. The concluding remarks provide an outlook on the future development of sub-wavelength structures and their impact in photonics.
机译:自赫兹(Hertz)首次进行电磁波极化实验以来,就已经知道具有亚波长节距的周期性结构。尽管在1990年代提出在波导光学中使用这些结构,但随着硅光子学和高精度光刻技术的最新发展,亚波长结构已在光子学领域得到了广泛应用。本文首先介绍了亚波长结构的物理原理。然后概述了亚波长结构的应用,包括:抗反射涂层,偏振旋转器,高效光纤芯片耦合器,光谱仪,高反射镜,无热波导,多模干涉耦合器以及色散设计的超-宽带波导耦合器。要特别注意提供有关这些设备的设计策略的见解。结束语对亚波长结构的未来发展及其在光子学中的影响提供了展望。

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