Yang Chengkun, Zhou Zhonghao, Gao Xudong, Xu Zhengzhu, Han Shoubao, Chong Yuhua, Min Rui, Yue Yang, Duan Zongming
Center for East China Research Institute of Electronics Engineering, Hefei 230036, China.
Center for Cognition and Neuroergonomics, State Key Laboratory of Cognitive Neuroscience and Learning, Beijing Normal University, Zhuhai 519087, China.
Sensors (Basel). 2024 Aug 16;24(16):5303. doi: 10.3390/s24165303.
Array waveguide gratings (AWGs) have been widely used in multi-purpose and multi-functional integrated photonic devices for Microwave photonics (MWP) systems. In this paper, we compare the effect of output waveguide configurations on the performance of AWGs. The AWG with an output waveguide converging on the grating circle had larger crosstalk and lower nonuniformity. We also fabricated a 1 × 8 AWG with an output waveguide converging onto the SOI's grating circle, whose central operation wavelength was around 1550 nm. The fabricated AWG has a chip size of 500 μm × 450 μm. Experimental results show that the adjacent channel crosstalk is -12.68 dB. The center channel insertion loss, as well as 3 dB bandwidth, are 4.18 dB and 1.22 nm at 1550 nm, respectively. The nonuniformity is about 0.494 dB, and the free spectral range is 19.4 nm. The proposed AWG is expected to play an important role in future MWP systems given its good nonuniformity and insertion loss level.
阵列波导光栅(AWG)已广泛应用于微波光子学(MWP)系统的多用途和多功能集成光子器件中。在本文中,我们比较了输出波导配置对AWG性能的影响。输出波导汇聚在光栅圆上的AWG具有更大的串扰和更低的不均匀性。我们还制作了一个输出波导汇聚到SOI光栅圆上的1×8 AWG,其中心工作波长约为1550 nm。制作的AWG芯片尺寸为500μm×450μm。实验结果表明,相邻信道串扰为-12.68 dB。在1550 nm处,中心信道插入损耗和3 dB带宽分别为4.18 dB和1.22 nm。不均匀性约为0.494 dB,自由光谱范围为19.4 nm。鉴于其良好的不均匀性和插入损耗水平,所提出的AWG有望在未来的MWP系统中发挥重要作用。