Zhang Song, Jiang Hao, Gu Honggang, Chen Xiuguo, Liu Shiyuan
Opt Express. 2020 Apr 13;28(8):10873-10887. doi: 10.1364/OE.389825.
A high-speed Mueller matrix ellipsometer (MME) based on photoelastic modulator (PEM) polarization modulation and division-of-amplitude polarization demodulation has been developed, with which a temporal resolution of 11 µs has been achieved for a Mueller matrix measurement. To ensure the accuracy and stability, a novel approach combining a fast Fourier transform algorithm and Bessel function expansion is proposed for the in-situ calibration of PEM. With the proposed calibration method, the peak retardance and static retardance of the PEM can be calibrated with high accuracy and sensitivity over an ultra large retardance variation range. Both static and dynamic measurement experiments have been carried out to show the high accuracy and stability of the developed MME, which can be expected to pave the way for in-situ and real-time monitoring for rapid reaction processes.
一种基于光弹调制器(PEM)偏振调制和振幅分割偏振解调的高速穆勒矩阵椭偏仪(MME)已被研制出来,利用该仪器在穆勒矩阵测量中实现了11微秒的时间分辨率。为确保精度和稳定性,提出了一种将快速傅里叶变换算法和贝塞尔函数展开相结合的新方法用于PEM的原位校准。采用所提出的校准方法,可在超大延迟变化范围内高精度、高灵敏度地校准PEM的峰值延迟和静态延迟。已进行了静态和动态测量实验,以展示所研制的MME的高精度和稳定性,有望为快速反应过程的原位和实时监测铺平道路。