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Slow-light and evanescent modes at interfaces in photonic crystal waveguides: optimal extraction from experimental near-field measurements

机译:光子晶体波导界面处的慢光和e逝模:从实验近场测量中的最佳提取

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摘要

We develop a systematic approach for simultaneous extraction of the dispersion relations and profiles of multiple modes in periodic waveguides though a special global optimization procedure applied to near-field electric field measurements in the waveguide plane. We apply this method to perform in-depth analysis of experimental data on wave propagation close to an interface between waveguide sections with different dispersion characteristics, and we successfully identify several modes contributing to the experimentally measured fields. We find clear evidence that when the group velocity is reduced across the interface, evanescent modes that facilitate the excitation of propagating slow-light waves appear, confirming previous theoretical predictions. (C) 2011 Optical Society of America
机译:我们开发了一种用于同时提取周期性波导中多个模式的色散关系和轮廓的系统方法,尽管该方法适用于在波导平面中进行近场电场测量的特殊全局优化程序。我们应用该方法对具有不同色散特性的波导部分之间的界面附近的波传播进行了深入的实验数据分析,并且成功地确定了有助于实验测量场的几种模式。我们发现明显的证据表明,当通过界面降低群速度时,会出现有助于激发传播慢光波的e逝模,从而证实了先前的理论预测。 (C)2011年美国眼镜学会

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