Tian Ke, Yu Jibo, Wang Xin, Zhao Haiyan, Liu Dejun, Lewis Elfed, Farrell Gerald, Wang Pengfei
Opt Lett. 2020 Feb 1;45(3):787-790. doi: 10.1364/OL.385222.
We propose and demonstrate a miniature Fabry-Perot interferometer (FPI) based on a movable microsphere reflector. The movable microsphere acts as a good reflector, with the reflections occurring at the spliced single-mode fiber/hollow-core fiber interface and the surface of a microsphere, resulting in two-beam interference. The silica microsphere is formed at the tip of a half-tapered optical fiber, and its diameter can be reduced to miniaturize the FPI. The movable microsphere interferometer exhibits a highly linear response to external displacement change, and a high displacement sensitivity of 11.9 pm/nm with a nanoscale resolution of 1.7 nm is achieved. Wide-range displacement can also be measured by monitoring the changes in the free spectral range of the reflection spectrum. Therefore, this miniaturized FPI may find use in applications in nano-displacement measurement fields, and the concept of a movable microsphere reflector is of great significance for the miniaturization of micro-photonic devices.
我们提出并展示了一种基于可移动微球反射镜的微型法布里-珀罗干涉仪(FPI)。可移动微球作为良好的反射镜,反射发生在熔接的单模光纤/空心光纤界面以及微球表面,从而产生双光束干涉。二氧化硅微球形成于半锥形光纤的尖端,其直径可减小以实现FPI的小型化。可移动微球干涉仪对外界位移变化呈现高度线性响应,实现了11.9 pm/nm的高位移灵敏度以及1.7 nm的纳米级分辨率。通过监测反射光谱的自由光谱范围变化,还可测量大范围位移。因此,这种小型化FPI可用于纳米位移测量领域的应用,并且可移动微球反射镜的概念对微光电器件的小型化具有重要意义。