摘要
从光子晶体的光子频率禁带特性出发,提出了用两个或两个以上的各向异性周期结构光子晶体叠加在一起,形成叠层结构光子晶体,以获得窄带滤波特性的设想;利用光学传输矩阵法研究了这种结构的光子晶体,分析了在不同入射角和折射率条件下,该周期结构的透射和偏振的光学特性。分析表明,各向异性光子晶体在折射率比值较大或与高折射率各向同性介质结合使用,可以获得较窄的通带,从而实现滤波。数值模拟的结果也证实了上述构思的正确性。
A photonic crystal narrow pass band optical filter was presented, which is made of two pieces of uniaxial anisotropic photonic crystals with different photonic band gaps. The principle for the system is to arrange properly the band gaps of the two photonic crystals so that a small narrow pass band appears in the combined photonic band gap region. The optical characteristics such as transmission and polarization of this periodic structure in different incident tangos and refractivity conditions were analysed. The results show that if the uniaxial anisotropic photonic crystal has a large ratio of refractivities or combined with high refractivity isotropic media, it may have a narrow pass band gap, and our numberical investigations show that this kind of structure is feasible for narrow band optical filtering.
出处
《量子电子学报》
CAS
CSCD
北大核心
2004年第6期868-872,共5页
Chinese Journal of Quantum Electronics
基金
河南省教育厅自然科学基础研究资助项目
关键词
量子光学
波分复用
各向异性光子晶体
光子禁带
传输矩阵
光窄带滤波器
quantum optics
wavelength division multiplexing
uniaxial anisotropic photonic crystals
photonic band gap
transmitting matrix
optical narrow pass band filers