Saha Nabarun, Brunetti Giuseppe, Armenise Mario Nicola, Ciminelli Caterina
Opt Express. 2022 Aug 1;30(16):28632-28646. doi: 10.1364/OE.461876.
Tunable add/drop filter based optical interconnects are an integral part of data centers as well as optical communications. Although add/drop filters based on ring resonators and waveguide Bragg gratings are well developed, long period waveguide grating (LPWG) based add/drop filters have little been investigated so far. In this article, we propose an apodized LPWG assisted co-directional coupler for narrow band add/drop filtering by combining silicon (Si) waveguide with titanium dioxide (TiO) waveguide geometry. The proposed structure has been analyzed by combining the finite element method (FEM) and transfer matrix method (TMM), showing a good side lobe suppression ratio (SLSR) equal to 25.7 dB and an insertion loss of 0.6 dB. Owing to the high group index difference of Si and TiO waveguides, a narrow band response of 1.4 nm has been achieved with 800µm long LPWG. The opposite thermo-optic coefficients of Si and TiO ensures a good thermal tunability of the central wavelength. Considering a thin metallic heater of titanium nitride (TiN) the thermal tuning efficiency is found to be 0.07 nm/mW. Further, two LPWGs have been cascaded to realize a tunable dual channel filter with a minimum channel spacing of 185 GHz and a channel crosstalk better than 20 dB, showing its potential application towards dense wavelength division multiplexing.
基于可调谐分插滤波器的光互连是数据中心以及光通信不可或缺的一部分。尽管基于环形谐振器和波导布拉格光栅的分插滤波器已经得到了很好的发展,但基于长周期波导光栅(LPWG)的分插滤波器到目前为止很少受到研究。在本文中,我们通过将硅(Si)波导与二氧化钛(TiO₂)波导结构相结合,提出了一种用于窄带分插滤波的变迹LPWG辅助同向耦合器。通过结合有限元方法(FEM)和传输矩阵方法(TMM)对所提出的结构进行了分析,结果表明其具有25.7 dB的良好旁瓣抑制比(SLSR)和0.6 dB的插入损耗。由于Si和TiO₂波导具有高的群折射率差,使用800 µm长的LPWG实现了1.4 nm的窄带响应。Si和TiO₂相反的热光系数确保了中心波长具有良好的热可调性。考虑到氮化钛(TiN)的薄金属加热器,发现热调谐效率为0.07 nm/mW。此外,两个LPWG级联以实现可调谐双通道滤波器,其最小通道间距为185 GHz,通道串扰优于20 dB,显示了其在密集波分复用方面的潜在应用。