首页> 外文期刊>The European physical journal, B. Condensed matter physics >Design for 2D anisotropic photonic crystal with large absolute band gaps by using a genetic algorithm
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Design for 2D anisotropic photonic crystal with large absolute band gaps by using a genetic algorithm

机译:遗传算法设计绝对带隙较大的二维各向异性光子晶体

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摘要

A 2-state genetic algorithm (GA) approach is used to design a two-dimensional (2D) anisotropic photonic crystal of square lattice with a maximal absolute band gap. The unit cell is devided equally into many small squares, and each filling pattern of squares with two dielectric materials corresponds to a binary number. As a numerical example, the GA gives a 2D Te structure with a relative width of the absolute band gap of about 23%. After a further optimization, a new structure is obtained with a relative width of the absolute band gap of about 28%.
机译:使用二态遗传算法(GA)方法来设计具有最大绝对带隙的方形晶格二维(2D)各向异性光子晶体。晶胞被均等地划分为许多小正方形,并且具有两种介电材料的正方形的每个填充图案对应于一个二进制数。作为数值示例,GA给出了2D Te结构,其绝对带隙的相对宽度约为23%。在进一步优化之后,获得了一种新的结构,其绝对带隙的相对宽度约为28%。

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