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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Theory of disorder-induced coherent scattering and light localization in slow-light photonic crystal waveguides
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Theory of disorder-induced coherent scattering and light localization in slow-light photonic crystal waveguides

机译:慢光光子晶体波导中无序引起的相干散射和光局部化的理论

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摘要

We introduce a theoretical formalism to describe disorder-induced extrinsic scattering in slow light photonic crystal waveguides. This work details and extends the optical scattering theory used in a recent issue of Physics Review Letters (Patterson et al 2009 Phys. Rev. Lett. 102 253903) to describe coherent scattering phenomena and successfully explain related experimental measurements. Our presented theory, which combines Green function and coupled mode methods, allows us to self-consistently account for arbitrary multiple scattering for the propagating electric field and recover experimental features such as resonances near the band edge. The technique is fully three-dimensional and can calculate the effects of disorder on the propagating field over thousands of unit cells. As an application of this theory, we explore various sample lengths and disordered instances, and demonstrate the profound effect of multiple scattering in the waveguide transmission. The spectra yield rich features associated with disorder-induced localization and multiple scattering, which are shown to be exacerbated in the slow light propagation regime.
机译:我们引入了一种理论形式主义来描述慢光子晶体波导中由无序引起的外在散射。这项工作详述并扩展了最近一期的《 Physics Review Letters》(Patterson等人,2009 Phys。Rev. Lett。102 253903)中使用的光学散射理论,以描述相干散射现象并成功地解释了相关的实验测量结果。我们提出的理论结合了格林函数和耦合模式方法,使我们能够自洽地考虑传播电场的任意多重散射,并恢复实验特征,例如在频带边缘附近的共振。该技术是完全三维的,可以计算无序对数千个单位细胞传播场的影响。作为该理论的应用,我们探索了各种样本长度和无序实例,并论证了多重散射在波导传输中的深远影响。光谱产生了与无序诱导的定位和多重散射相关的丰富特征,​​这些特征在慢速光传播机制中被加剧。

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