Bai Jiao, Li Xinghui, Zhou Qian, Ni Kai, Wang Xiaohao
Opt Express. 2019 Apr 15;27(8):10961-10973. doi: 10.1364/OE.27.010961.
To improve the positioning capabilities of a chromatic confocal displacement measurement system, we introduce a super-resolving pupil filtering element (referred to as spatial-bandpass-filter), an X-shaped fiber-coupler, and a modified peak-extraction algorithm. The spatial-bandpass-filer decreases the spherical aberration of conventional refractive lenses and transmission loss, without changing the dispersion range. The new optical design minimizes the effect of light-source-variation as well as reflectance-variation of the sample surface against the wavelength by adding a reference arm with an X-shaped fiber-coupler and normalization algorithm. This enables rapid re-purposing to obtain data for crosstalk, reference and measurement signals. A prototype setup was built and the experimental results show that the new chromatic dispersion system can reach a position stability of ± 0.36 μm using a commercial cost-effective white-light source. It reaches an axial displacement resolution of up to 1 μm and a peak-fit error below ± 0.2% for a range of 1.05 mm.
为了提高色差共焦位移测量系统的定位能力,我们引入了一种超分辨光瞳滤波元件(称为空间带通滤波器)、一个X形光纤耦合器和一种改进的峰值提取算法。空间带通滤波器可降低传统折射透镜的球差和传输损耗,同时不改变色散范围。通过添加带有X形光纤耦合器的参考臂和归一化算法,新的光学设计将光源变化以及样品表面对波长的反射率变化的影响降至最低。这使得能够快速重新调整用途,以获取串扰、参考和测量信号的数据。构建了一个原型装置,实验结果表明,使用具有商业成本效益的白光源,新的色散系统可实现±0.36μm的位置稳定性。在1.05mm的范围内,其轴向位移分辨率高达1μm,峰值拟合误差低于±0.2%。