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Experimental and theoretical observations of the slow-light effect on a tunable photonic crystal

机译:可调光子晶体上的慢光效应的实验和理论观察

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We describe how the susceptibility of a nonlinear material, such as lithium niobate, can change when the material is nanostructured. Indeed, we show, by the calculation of the local-field factor inside a photonic crystal, a significant augmentation of the susceptibility, especially at the edges of the photonic bandgap. In addition, and for the case of lithium niobate, we observe an increase of the second-order nonlinear coefficient. The experimental realization of an electro-optic tunable photonic crystal, based on a square lattice of holes, shows that the measured phenomenon completely agrees with the theoretical predictions. (C) 2007 Optical Society of America
机译:我们描述了一种非线性材料(如铌酸锂)在纳米结构时如何改变其磁化率。实际上,通过计算光子晶体内部的局部场因子,我们显示出磁化率的显着提高,尤其是在光子带隙的边缘。另外,对于铌酸锂,我们观察到二阶非线性系数的增加。基于孔的方形晶格的电光可调光子晶体的实验实现表明,测得的现象与理论预测完全一致。 (C)2007年美国眼镜学会

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