Chen Xiaogang, Zhao Xuyang, Guo Zhihe, Fu Liang, Lu Qijing, Xie Shusen, Wu Xiang
Opt Express. 2020 May 11;28(10):15161-15172. doi: 10.1364/OE.392728.
An optofluidic microbubble Fabry-Pérot (OMBFP) cavity was investigated. In contrast to plane-plane FP (PPFP) cavities, the optical mode confinement and stability in an OMBFP were significantly enhanced. The optical properties of the OMBFP cavity, including the quality (Q) factor, effective mode area, mode distribution as a function of the core refractive index, microbubble position, and mirror tilt angle, were investigated systematically using the finite element method. In optofluidic lasing experiments, a low lasing threshold of 1.25 µJ/mm, which was one order magnitude lower than that of the PPFP, was achieved owing to improved modal lateral confinement. Since the microbubble acts as a micro-lens and microfluidic channel in the parallel FP cavity, mode selection and cell-dye laser were easily realized in the OMBFP cavity.
研究了一种光流控微泡法布里 - 珀罗(OMBFP)腔。与平面 - 平面FP(PPFP)腔相比,OMBFP中的光学模式限制和稳定性得到了显著增强。使用有限元方法系统地研究了OMBFP腔的光学特性,包括品质(Q)因子、有效模式面积、作为纤芯折射率、微泡位置和镜面倾斜角函数的模式分布。在光流控激光实验中,由于改进的模式横向限制,实现了1.25 μJ/mm的低激光阈值,比PPFP的低一个数量级。由于微泡在平行FP腔中充当微透镜和微流体通道,因此在OMBFP腔中很容易实现模式选择和细胞 - 染料激光。