首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Dependence of nonlinearity enhancement on power density in photonic crystals characterized by numerical Z-scan experiments based on the finite-difference time-domain technique
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Dependence of nonlinearity enhancement on power density in photonic crystals characterized by numerical Z-scan experiments based on the finite-difference time-domain technique

机译:基于有限差分时域技术的数值Z扫描实验表征的非线性增强对光子晶体功率密度的依赖

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We investigate the enhancement of nonlinearity in one-dimensional (1D) photonic crystals (PCs) with Kerr nonlinearity by numerical Z-scan experiments based on the finite-difference time-domain technique. Focused Gaussian beams with well-defined waists and Rayleigh lengths necessary for Z-scan experiments are generated through a conjugated manipulation of the Gaussian beams propagating in free space. The Z-scan measurements used for bulk materials are naturally extended to 1D PCs after incorporating the frequency- and power-density-dependent reflections into their linear and nonlinear absorptions. The closed- and open-aperture Z-scan traces for the 1D PCs are obtained and a symmetric method is employed to modify the asymmetric closed-aperture traces. The nonlinearity enhancement factors at different frequencies in the first and second bands are derived numerically and analytically. A good agreement is found between the numerical and analytical results in the case of weak nonlinearity. Moreover, the dependences of the enhancement factor on the incident power density for different frequencies in the 1D PCs are extracted and they are found to be much different from those in bulk materials. It is revealed that the variation of the group velocity with increasing power density is responsible for the power-density dependence of the enhancement factor. It indicates that in practice one must deliberately choose the working frequency and power density of PC-based devices in order to achieve a maximum enhancement of nonlinearity. (C) 2008 Optical Society of America.
机译:我们通过基于有限差分时域技术的数值Z扫描实验研究具有Kerr非线性的一维(1D)光子晶体(PC)的非线性增强。通过对在自由空间中传播的高斯光束进行共轭操纵,可以生成具有清晰定义的腰部和Z扫描实验所需的瑞利长度的聚焦高斯光束。将与频率和功率密度相关的反射合并到其线性和非线性吸收之后,用于散装材料的Z扫描测量自然会扩展到一维PC。获得了一维PC的闭孔和开孔Z扫描轨迹,并采用对称方法修改不对称闭孔轨迹。对第一和​​第二频带中不同频率处的非线性增强因子进行了数值分析。在非线性较弱的情况下,数值和分析结果之间找到了很好的一致性。此外,提取了增强因子对一维PC中不同频率的入射功率密度的依赖性,发现它们与散装材料中的有很大不同。结果表明,群速度随功率密度的增加而变化,是增强因子的功率密度依赖性的原因。它表明,在实践中,必须故意选择基于PC的设备的工作频率和功率密度,以实现非线性的最大增强。 (C)2008年美国眼镜学会。

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