Kim Sangin, Park Ikmo, Lim Hanjo, Kee Chul-Sik
Opt Express. 2004 Nov 1;12(22):5518-25. doi: 10.1364/opex.12.005518.
We have derived the general condition to achieve 100% drop efficiency in the resonant tunneling-based channel drop filters of a threeport system with reflection feedback. According to our theoretical modeling based on the coupled mode theory in time, the condition is that the Q-factor due to coupling to a bus port should be twice as large as the Q-factor due to coupling to a drop port and the phase retardation occurring in the round trip between a resonator and a reflector should be a multiple of 2pi. The theoretical modeling also shows that the reflection feedback in the threeport channel drop filters brings about relaxed sensitivity to the design parameters, such as the ratio between those two Q-factors and the phase retardation in the reflection path. Based on the theoretical modeling, a fivechannel drop filter has been designed in a two-dimensional photonic crystal, in which only a single reflector is placed at the end of the bus waveguide. The performance of the designed filter has been numerically calculated using the finite-difference time domain method. In the designed filter, drop efficiencies larger than 96% in all channels have been achieved.
我们已经推导出在具有反射反馈的三端口系统的基于共振隧穿的通道下降滤波器中实现100%下降效率的一般条件。根据我们基于时间耦合模理论的理论建模,该条件是,由于与总线端口耦合导致的品质因数应是由于与下降端口耦合导致的品质因数的两倍,并且在谐振器和反射器之间的往返过程中发生的相位延迟应是2π的倍数。理论建模还表明,三端口通道下降滤波器中的反射反馈降低了对设计参数的敏感度,例如这两个品质因数之间的比率以及反射路径中的相位延迟。基于该理论建模,在二维光子晶体中设计了一个五通道下降滤波器,其中仅在总线波导的末端放置了一个反射器。使用时域有限差分法对所设计滤波器的性能进行了数值计算。在所设计的滤波器中,所有通道的下降效率均已达到96%以上。