Opt Lett. 2023 Jul 15;48(14):3729-3732. doi: 10.1364/OL.496944.
Due to the resonant nature and silicon's strong optical nonlinearity, the system's performance of silicon micro-ring modulators can be seriously affected by the input optical power. In this Letter, we proposed and experimentally demonstrated a multi-mode silicon micro-ring modulator to mitigate its optical nonlinear effects by operating in the TE mode. The TE mode features a high nonlinear threshold compared with the TE mode because of its larger waveguide loss and larger mode effective area. Under the condition of 10 mW optical input power, the resonance spectrum maintains a good symmetric Lorentz shape. The resonant wavelength shifts less than one resonance linewidth, showing an improved robustness to optical nonlinearity compared with regular silicon micro-ring modulators.
由于共振特性和硅的强光学非线性,输入光功率会严重影响硅微环调制器的系统性能。在本信中,我们提出并实验验证了一种多模硅微环调制器,通过在 TE 模式下工作来减轻其光学非线性效应。TE 模式的波导损耗较大,模式有效面积较大,因此其非线性阈值比 TM 模式高。在 10mW 光输入功率的条件下,谐振光谱保持良好的对称洛伦兹形状。与常规硅微环调制器相比,谐振波长的漂移小于一个谐振线宽,表明对光学非线性的稳定性更好。