Fang Qing, Song Junfeng, Luo Xianshu, Yu Mingbin, Lo Guoqiang, Liu Yuliang
Optoelectronic System Laboratory, Institute of Semiconductors, CAS, Beijing 100083, China.
Opt Express. 2011 Oct 24;19(22):21588-94. doi: 10.1364/OE.19.021588.
An ultralow coupling loss and broad bandwidth fiber-to-waveguide mode-size converter is demonstrated for nano-scale waveguides on SOI platform using CMOS technology in this paper. The mode-size converter consists of a cantilevered PECVD SiO(2) waveguide and a-Si nano-tapers by removing the adjacent SiO(2) layer and underlying substrate Si. The a-Si waveguide is located at the center of the cantilevered SiO(2) waveguide. We characterized the cantilevered mode-size converter using cleaved optical single mode fiber with 10.5 µm mode field diameter. With refractive index (1.375) matching oil, the measured coupling efficiencies between the cleaved optical fiber and this converter are higher than 80% per facet and 70% per facet for TE and TM modes at 1600 nm, respectively. The polarization dependent loss and the coupling loss variation of this converter are less than 1.0 dB at the wavelength range of 1520~1640 nm. The 1-dB bandwidths for both TE and TM modes are more than 120 nm. The alignment tolerances for TE and TM modes are ± 2.8 µm and ± 2.1 µm at 1-dB excess loss in horizontal direction and vertical direction, respectively.
本文展示了一种采用CMOS技术在SOI平台上用于纳米级波导的超低耦合损耗和宽带宽光纤到波导模式尺寸转换器。该模式尺寸转换器由一个悬臂式PECVD SiO₂波导和通过去除相邻SiO₂层及底层衬底Si形成的非晶硅纳米锥组成。非晶硅波导位于悬臂式SiO₂波导的中心。我们使用模场直径为10.5 µm的劈裂单模光纤对悬臂式模式尺寸转换器进行了表征。在1600 nm波长下,使用折射率为1.375的匹配油时,测得的劈裂光纤与该转换器之间的耦合效率在TE和TM模式下每面分别高于80%和70%。该转换器在1520~1640 nm波长范围内的偏振相关损耗和耦合损耗变化小于1.0 dB。TE和TM模式的1 dB带宽均超过120 nm。在水平和垂直方向上,TE和TM模式在1 dB额外损耗时的对准容差分别为± 2.8 µm和± 2.1 µm。