Li Zezheng, Huang Xingrui, Liu Yang, Kuang Yingxin, Guan Huan, Tian Lifei, Li Zhiyong, Han Weihua
Opt Express. 2020 Nov 9;28(23):34137-34146. doi: 10.1364/OE.405449.
We propose a novel optical 1×2 power splitter based on an asymmetric ladder-shaped multimode interference (MMI) coupler in silicon-on-insulator (SOI) which has an ultra-compact size of 3.3 µm×2.4 µm. A trapezoid with a small region is removed from the bottom left corner of the MMI coupler to achieve variable splitting ratio. The comparison with the asymmetric rectangular 1×2 splitter is numerically analyzed. By carefully optimizing the width of input taper, the proposed splitter shows a low phase deviation for the two output ports while keeping both of a low-loss performance and feasible splitting ratio. The simulated results show that the splitter can operate with an insertion loss less than 0.67 dB, a large range of splitting ratio from 50:50 to 11:89 and an ultra-low phase deviation less than 2.8 among the C band spectra.
我们提出了一种基于绝缘体上硅(SOI)中不对称梯形多模干涉(MMI)耦合器的新型光学1×2功率分配器,其具有3.3 µm×2.4 µm的超紧凑尺寸。从MMI耦合器的左下角移除一个小区域的梯形以实现可变分光比。对与不对称矩形1×2分光器的比较进行了数值分析。通过仔细优化输入锥形的宽度,所提出的分光器在保持低损耗性能和可行分光比的同时,两个输出端口的相位偏差较低。模拟结果表明,该分光器在C波段光谱中可实现小于0.67 dB的插入损耗、50:50至11:89的大范围分光比以及小于2.8的超低相位偏差。