Barter James D, Thompson Harold R, Richardson Christine L
TRW Space and Electronics, R1-1008, One Space Park, Redondo Beach, California 90278-1001, USA.
Appl Opt. 2003 Mar 20;42(9):1620-8. doi: 10.1364/ao.42.001620.
A fully polarimetric optical camera system has been constructed to obtain polarimetric information simultaneously from four synchronized charge-coupled device imagers at video frame rates of 60 Hz and a resolution of 640 x 480 pixels. The imagers view the same scene along the same optical axis by means of a four-way beam-splitting prism similar to ones used for multiple-imager, common-aperture color TV cameras. Appropriate polarizing filters in front of each imager provide the polarimetric information. Mueller matrix analysis of the polarimetric response of the prism, analyzing filters, and imagers is applied to the detected intensities in each imager as a function of the applied state of polarization over a wide range of linear and circular polarization combinations to obtain an average polarimetric calibration consistent to approximately 2%. Higher accuracies can be obtained by improvement of the polarimetric modeling of the splitting prism and by implementation of a pixel-by-pixel calibration.
已构建了一个全极化光学相机系统,以60Hz的视频帧率和640×480像素的分辨率,从四个同步电荷耦合器件成像器同时获取极化信息。成像器通过一个类似于用于多成像器、共孔径彩色电视摄像机的四路分束棱镜,沿同一光轴观察同一场景。每个成像器前面的适当偏振滤光片提供极化信息。对棱镜、分析滤光片和成像器的极化响应进行穆勒矩阵分析,并将其应用于每个成像器中检测到的强度,该强度是在广泛的线性和圆偏振组合范围内施加的偏振状态的函数,以获得约2%一致性的平均极化校准。通过改进分束棱镜的极化建模和实施逐像素校准,可以获得更高的精度。