Luan Jiapeng, Qin Yue, Wang Zelu, Xiao Shuqi, Tsang Hon Ki
Opt Lett. 2024 May 15;49(10):2721-2724. doi: 10.1364/OL.524988.
A 2 × 2 switch based on differential effective thermo-optic (TO) coefficients of waveguide supermodes is proposed and experimentally demonstrated as a more compact alternative to Mach-Zehnder interferometer (MZI)-based switches used in coherent photonic matrix processing networks. The total waveguide width of the device is 1.335 μm. Using a novel, to the best of our knowledge, supermode coupler with a wideband 3-dB coupling ratio, the switch was engineered to have on-off extinction ratios (ERs) ranging from 24.1 to 38.9 dB for the two output ports over a 135 nm bandwidth. Insertion losses (ILs) of less than 0.3 and 0.4 dB over the 100 nm bandwidth were measured for bar and cross transmission, respectively. The waveguide width error tolerance is +/-30 nm. The proposed device has the potential to improve the scalability of a programmable coherent mesh for matrix processing by increasing the integration density without sacrificing the overall accuracy or limiting the operational wavelength range of the mesh.
提出了一种基于波导超模差分有效热光(TO)系数的2×2开关,并通过实验进行了演示,它是相干光子矩阵处理网络中基于马赫-曾德尔干涉仪(MZI)的开关的一种更紧凑的替代方案。该器件的总波导宽度为1.335μm。据我们所知,使用一种新型的具有宽带3dB耦合比的超模耦合器,该开关被设计为在135nm带宽内两个输出端口的开-关消光比(ER)范围为24.1至38.9dB。在100nm带宽内,分别测得条形传输和交叉传输的插入损耗(IL)小于0.3dB和0.4dB。波导宽度误差容限为+/-30nm。所提出的器件有可能通过提高集成密度来改善用于矩阵处理的可编程相干网格的可扩展性,而不会牺牲整体精度或限制网格的工作波长范围。