Ren Hongliang, Jiang Chun, Hu Weisheng, Gao Mingyi, Qu Yang, Wang Fanghua
State Key Laboratory of Advanced Optical Communication Systems & Networks, Shanghai Jiao Tong University, Shanghai 200240, China.
J Opt Soc Am A Opt Image Sci Vis. 2007 Oct;24(10):A7-11. doi: 10.1364/josaa.24.0000a7.
Based on two-dimensional photonic crystals with a triangular lattice, a channel drop filter with a wavelength-selective reflection microcavity is designed. In the structure, two microcavities are used. One is used for a resonant tunneling-based channel drop operation. The other is used to realize wavelength-selective reflection feedback in the bus waveguide. The phase term, which is derived by means of coupled-mode theory to achieve close to 100% drop efficiency, is satisfied by modifying the sizes of the border air holes next to the bus waveguide section between the two cavities. Using the finite-difference time-domain method, the simulation results show complete power transfer between the bus and drop waveguides via the system.
基于具有三角晶格的二维光子晶体,设计了一种带有波长选择性反射微腔的信道下滤滤波器。在该结构中,使用了两个微腔。一个用于基于共振隧穿的信道下滤操作。另一个用于在总线波导中实现波长选择性反射反馈。通过耦合模理论推导得出的相位项,用于实现接近100%的下滤效率,通过修改两个腔之间总线波导段旁边的边界气孔尺寸来满足该相位项。使用时域有限差分法,模拟结果表明通过该系统总线波导和下滤波导之间实现了完全的功率传输。