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1. 广西大学 物理科学与工程技术学院,广西 南宁,530004
2. 茂名学院 物理系,广东 茂名,525000
收稿日期:2008-11-10,
修回日期:1900-01-02,
网络出版日期:2010-02-20,
纸质出版日期:2010-02-20
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陈海波, 胡素梅, 高英俊. 用两端对称缺陷复合光子晶体实现多通道滤波和光开关[J]. 发光学报, 2010,31(1):7-11.
CHEN Hai-bo, HU Su-mei, GAO Ying-jun. Multiple Channeled Filters and Optical Switches Using Compound Photonic Crystal with Two Symmetrical Defect Layer at The Two Ports[J]. Chinese journal of luminescence, 2010, 31(1): 7-11.
陈海波, 胡素梅, 高英俊. 用两端对称缺陷复合光子晶体实现多通道滤波和光开关[J]. 发光学报, 2010,31(1):7-11. DOI:
CHEN Hai-bo, HU Su-mei, GAO Ying-jun. Multiple Channeled Filters and Optical Switches Using Compound Photonic Crystal with Two Symmetrical Defect Layer at The Two Ports[J]. Chinese journal of luminescence, 2010, 31(1): 7-11. DOI:
用传输矩阵法计算了两端对称缺陷复合光子晶体结构的光传输特性。计算结果表明:两端对称缺陷复合光子晶体
2
结构中的禁带出现两个完全共振透射峰。通过控制入射光强来微调光子晶体材料的介电常数
使得完全共振透射峰移动
且介电常数变化越大
共振透射峰偏移越大
从而形成高效率的双通道光开关。当光子晶体为
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em
>
N结构时
每个完全共振透射峰都分裂为N-1条
这样可通过调节N同时实现所需要通道数目的高效多通道光开关和多通道滤波器。
By using the method of optical transfer maxtrix
the optical transmission properties of compound photonic crystal with two symmetrical defect layer at the two ports were studied. The investigation results showed that two resonance transmittance peaks exist in the band gap in dual-period photonic crystal
2
structure. The resonance transmittance peaks will shift with the small changes of the dielectric constants of photonic crystal induced by a control light. The more the dielectric constants change
the more resonance transmittance peaks shift
leading to high-efficiency dual channeled optical switches being realized. Each resonance transmission peak can split into N-1 different transmission peaks in the
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em
>
N structure photonic crystal. We can gain appropriate multiple channel filters and optical switches by adjusting N.
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. Yan Mingbao, Wang Hailong, Zhou Ping. Transmission properties of 2D photonic crystals with triangular dielectric rods [J]. Chin. J. Lumin.(发光学报), 2009, 30 (1):1-6 (in English).
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. Zhang Zhengren, Long Zhengwen, Yuan Yuquan. Transmission charecteristic of GHz wave band in dispersive photonic crystal [J]. Chin. J. Lumin.(发光学报), 2009, 30 (5):678-681 (in Chinese).
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