首页> 外文期刊>Journal of nonlinear optical physics & materials >OPTIMIZATION OF QUALITY FACTOR IN PHOTONIC CRYSTAL CAVITIES THROUGH FINITE DIFFERENCE TIME DOMAIN AND MULTIPOLE EXPANSION TECHNIQUE
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OPTIMIZATION OF QUALITY FACTOR IN PHOTONIC CRYSTAL CAVITIES THROUGH FINITE DIFFERENCE TIME DOMAIN AND MULTIPOLE EXPANSION TECHNIQUE

机译:有限差分时域和多极扩展技术优化光子晶体腔质量因子

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摘要

Local density of photonic states calculation based on multipole expansion method is a powerful tool for studying spontaneous emission and calculation of photon confinement in photonic crystal cavities. Using multipole expansion method, we calculate local density of states and quality factor of a two-dimensional three angle photonic crystal cavity. We also compare this quality factor result with the one calculated using finite difference time domain of a pulse response. It turns out that the local density of states calculation is more accurate and computationally less expensive. It is shown that shifting and changing the size of neighboring cylinders in the vicinity of photonic crystal cavity has a large impact on the mode volume and confinement. It is also described how the increasing of quality factor can be split up into local optimization of neighboring rods and the effect of increasing the number of photonic crystal layers, which exponentially increases the quality factor. This finding strongly suggests that the number of layers can be excluded from an optimization procedure. We also present structural design rules and geometrical freedom contour plots for the neighboring cylinders. These design rules can be used in further optimization of photonic crystal cavities.
机译:基于多极扩展方法的光子态局部密度计算是研究自发辐射和光子晶体腔内光子约束计算的有力工具。使用多极展开法,我们计算了二维三角光子晶体腔的局部态密度和品质因数。我们还将这种品质因数结果与使用脉冲响应的有限差分时域计算得出的结果进行比较。事实证明,状态的局部密度计算更准确,计算成本更低。结果表明,在光子晶体腔附近改变和改变相邻圆柱体的尺寸对模式体积和限制有很大影响。还描述了如何将品质因数的增加分解为相邻棒的局部优化以及增加光子晶体层数的效果,从而成倍地增加品质因数。该发现强烈暗示可以从优化过程中排除层数。我们还介绍了相邻圆柱体的结构设计规则和几何自由度轮廓图。这些设计规则可用于进一步优化光子晶体腔。

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