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快速遗传算法优化计算二维光子晶体
引用本文:龚春娟,胡雄伟. 快速遗传算法优化计算二维光子晶体[J]. 半导体学报, 2006, 27(6): 1098-1102
作者姓名:龚春娟  胡雄伟
作者单位:中国科学院半导体研究所,集成光电子学国家重点实验室,北京,100083
摘    要:采用平面波展开法和快速遗传算法优化设计具有大禁带的二维光子晶体.从随机产生的晶体结构开始,在遗传算法中引入占空比控制算符和傅里叶变换数据备份机制,快速搜索到了具有较大绝对禁带的正方晶格光子晶体,其最大完全禁带的相对宽度值为13.25%,并且制备难度较低.

关 键 词:二维光子晶体  光子带隙  遗传算法  平面波展开法
收稿时间:2015-08-20

Large Two-Dimensional Photonic Band-Gaps Designed by Rapid Genetic Algorithms
Gong Chunjuan, Hu Xiongwei. Large Two-Dimensional Photonic Band-Gaps Designed by Rapid Genetic Algorithms[J]. Journal of Semiconductors, 2006, In Press. Gong C J, Hu X W. Large Two-Dimensional Photonic Band-Gaps Designed by Rapid Genetic Algorithms[J]. Chin. J. Semicond., 2006, 27(6): 1098.Export: BibTex EndNote
Authors:Gong Chunjuan  Hu Xiongwei
Affiliation:State Key Laboratory on Integrated Optoelectronics,Institute of Semiconductors,Chinese Academy of Sciences,Beijing 100083,China;State Key Laboratory on Integrated Optoelectronics,Institute of Semiconductors,Chinese Academy of Sciences,Beijing 100083,China
Abstract:The plane wave expansion method (PWM) and rapid genetic algorithm (RGA) are used to design two-dimensional photonic crystals with large complete band-gaps.The algorithms evolve from randomly generated photonic crystals and integrate a filling fraction controlling operator and Fourier transform data storage mechanism to run efficiently and effectively.The obtained optimal photonic crystal has a large band gap with a relative width of 13.25% and can be easily fabricated due to large pixel.
Keywords:two-dimensional photonic crystals   photonic band gap   rapid genetic algorithm   plane wave expansion method
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