Zhuang Yuyang, Chen Heming, Ji Ke
Appl Opt. 2017 May 10;56(14):4185-4190. doi: 10.1364/AO.56.004185.
We propose a structure of a cascaded chirped narrow bandpass filter with a flat-top based on two-dimensional (2D) photonic crystals (PhCs). The filter discussed here consists of three filter units, each with a resonator and two reflectors. Coupled mode theory and transfer matrix method are methodologies applied in the analysis of the features. The calculations show that the bandwidth of the filter can be adjusted by changing the distances between resonators and reflectors, and based on this, a flat-top response can be achieved by chirped-cascading the filter units. According to the theoretical model, we design a narrow bandpass filter based on 2D PhCs with a triangular lattice of air holes, the parameters of which are calculated using the finite element method. The simulation results show that the filter has a center frequency of 193.40 THz, an insertion loss of 0.18 dB, a flat bandwidth of 40 GHz, and ripples of about 0.2 dB in the passband. The filter is suitable for dense-wavelength-division-multiplexed optical communication systems with 100 GHz channel spacing.
我们提出了一种基于二维(2D)光子晶体(PhC)的具有平顶的级联啁啾窄带通滤波器结构。这里讨论的滤波器由三个滤波单元组成,每个单元都有一个谐振器和两个反射器。耦合模理论和传输矩阵法是用于分析其特性的方法。计算表明,通过改变谐振器和反射器之间的距离可以调整滤波器的带宽,基于此,通过对滤波单元进行啁啾级联可以实现平顶响应。根据理论模型,我们设计了一种基于具有气孔三角晶格的二维PhC的窄带通滤波器,其参数使用有限元法计算。仿真结果表明,该滤波器的中心频率为193.40太赫兹,插入损耗为0.18分贝,平坦带宽为40吉赫兹,通带内纹波约为0.2分贝。该滤波器适用于具有100吉赫兹信道间隔的密集波分复用光通信系统。