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Anomalous refractive properties of photonic crystals

机译:光子晶体的反常折射特性

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摘要

We describe methods of investigating the behavior of photonic crystals. Our approach establishes a link between the dispersion relation of the Bloch modes for an infinite crystal (which describes the intrinsic properties of the photonic crystal in the absence of an incident field) and the diffraction problem of a grating (finite photonic crystal) illuminated by an incident field. We point out the relationship between the translation operator of the first problem and the transfer matrix of the second. The eigenvalues of the transfer matrix contain information about the dispersion relation. This approach enables us to answer questions such as When does ultrarefraction occur? Can the photonic crystal simulate a homogeneous and isotropic material with low effective index? This approach also enables us to determine suitable parameters to obtain ultrarefractive or negative refraction properties and to design optical devices such as highly dispersive microprisms and ultrarefractive microlenses. Rigorous computations add a quantitative aspect and demonstrate the relevance of our approach.
机译:我们描述调查光子晶体行为的方法。我们的方法在无限晶体的Bloch模的色散关系(描述了在没有入射场的情况下描述光子晶体的本征特性)与被光照射的光栅(有限光子晶体)的衍射问题之间建立了联系。入射场。我们指出了第一个问题的翻译算子和第二个问题的转移矩阵之间的关系。传递矩阵的特征值包含有关色散关系的信息。这种方法使我们能够回答诸如何时发生超折射的问题?光子晶体可以模拟有效折射率低的均质各向同性材料吗?这种方法还使我们能够确定合适的参数以获得超折射或负折射特性,并设计光学器件,例如高色散微棱镜和超折射微透镜。严格的计算增加了定量方面,并证明了我们方法的相关性。

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