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摘要

本文研究了光子晶体结构与非线性光学之间的“联姻”。我们对利用光子晶体(PCs)增强非线性效应表现出相当大的兴趣。材料的纳米结构使光子晶体的相位匹配成为可能。相位调谐是利用存在于光子禁带边缘的反常色散来实现的。这种类型的结构也使得在激发波的频率上获得光场模式的高密度成为可能,在那里需要获得显著的非线性效应。对非线性和光子晶体的一些基本原理作了介绍和讨论。重点是通过使用一些全非线性材料或二氧化硅混合物来设计这些pc。有了这种“联姻”,就有可能在微观尺度上实现不同的无源光学功能(滤光片、开关、可调谐)或主动功能(放大、发光、调制等)。
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Nonlinear Optics of Photonic Crystals
The “marriage” between photonic crystal structures and nonlinear optics is studied in the present paper. We demonstrate the considerable interest in the enhancement of nonlinear effects using photonic crystals (PCs). The Nano structuring of materials allows realizing the phase matching in photonic crystals. Phase tuning is achieved using the anomalous dispersion existing at the edges of photonic forbidden bands. This type of structure also makes it possible to obtain high densities of modes of the optical field at the frequency of the excitation wave, where it is desired to obtain significant nonlinear effects. An introduction and discussion of some of the basic principles of nonlinear and photonic crystals are given. The focus is on engineered of these PCs by using some total nonlinear materials or a mix with silica. With this “marriage”, it is then possible to realize, on a microscopic scale, different passive optical functions (filters, switches, tunable) or active functions (amplification, light emission, modulation, etc.).
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