Li Jiashun, Jia Pinggang, Qian Jiang, Wang Jun, An Guowen, Xiong Jijun
Appl Opt. 2022 May 1;61(13):3743-3747. doi: 10.1364/AO.453999.
In this paper, an all-silica microsphere-lens was designed and fabricated on the fiber end face, which can effectively improve the coupling efficiency of free-space light. In the production process, a coreless silica fiber with specific length was spliced on the end face of the fiber and melted by a laser fusion splicer. Due to the effect of surface tension, the coreless silica fiber would form a microsphere-lens on the fiber end face and the diameter of the microsphere-lens could be adjusted by controlling the light-passing time of the laser fusion splicer. Through experiments, it can be found that the 3 dB bandwidth optical coupling distance of the microsphere-lens with a diameter of 270 µm is about 200 µm, and the focus depth is about 450 µm. In order to verify the feasibility of using the microsphere-lens in the fiber-optic Fabry-Perot sensors, a Fabry-Perot interferometer was constructed by using the microsphere-lens and the single-mode fiber end face. The experimental results showed that the interference spectrum of the Fabry-Perot interferometer has a good contrast ratio. Integrating the advantages of all-silica structure, simple manufacturing process, low cost, small size, and sturdy construction, the proposed microsphere-lens is expected to be a potential candidate for free-space light coupling and fiber-optic sensors in extreme environments.
本文在光纤端面上设计并制作了全硅微球透镜,其可有效提高自由空间光的耦合效率。在制作过程中,将具有特定长度的无芯石英光纤熔接在光纤端面上,并通过激光熔接机进行熔化。由于表面张力的作用,无芯石英光纤会在光纤端面上形成一个微球透镜,且微球透镜的直径可通过控制激光熔接机的光通过时间来调节。通过实验发现,直径为270 µm的微球透镜的3 dB带宽光学耦合距离约为200 µm,焦深约为450 µm。为验证微球透镜在光纤法布里-珀罗传感器中应用的可行性,利用微球透镜和单模光纤端面构建了一个法布里-珀罗干涉仪。实验结果表明,该法布里-珀罗干涉仪的干涉光谱具有良好的对比度。综合全硅结构、制造工艺简单、成本低、尺寸小以及结构坚固等优点,所提出的微球透镜有望成为极端环境下自由空间光耦合和光纤传感器的潜在候选者。