Cao Qizhi, Zhang Jing, DeHoog Edward, Zhang Chunmin
Appl Opt. 2016 Feb 10;55(5):954-9. doi: 10.1364/AO.55.000954.
In an earlier publication, [Appl. Opt.51, 5791 (2012)] we demonstrated by theoretical analysis that a snapshot imaging polarimeter using modified Savart polariscopes (MSP-SIP) is comparable in carrier frequency, signal-to-noise ratio, and spatial resolution to a snapshot imaging polarimeter using conventional Savart polariscopes. In this investigation, numerical simulation is used to demonstrate the feasibility of MSP-SIP and investigate the limitation of the filtration and the Fourier analysis decoupling the polarization information encoded through the spatial modulation. In addition, a laboratory experiment is conducted to demonstrate the validity of MSP-SIP. The MSP-SIP operates on the principle of encoding polarization information within the spatial modulation of the image. This unique technology allows all Stokes parameters to be simultaneously recorded from every spatial position in an image with a single integration period of the imaging system. The device contains no moving parts and requires no scanning, allowing it to acquire data without the motion artifacts normally associated with a scanning polarimeter. In addition to snapshot imaging and static (no moving parts) capabilities, image processing is simple, and the device is compact and miniature. Therefore, we believe that MSP-SIP will be useful in many applications, such as remote sensing and bioscience.
在早期的一篇出版物[《应用光学》51, 5791 (2012)]中,我们通过理论分析证明,使用改进型萨伐尔偏光镜的快照成像偏振计(MSP - SIP)在载波频率、信噪比和空间分辨率方面与使用传统萨伐尔偏光镜的快照成像偏振计相当。在本研究中,使用数值模拟来证明MSP - SIP的可行性,并研究通过空间调制编码偏振信息的滤波和傅里叶分析解耦的局限性。此外,进行了实验室实验以证明MSP - SIP的有效性。MSP - SIP基于在图像的空间调制内编码偏振信息的原理工作。这种独特的技术允许在成像系统的单个积分周期内从图像中的每个空间位置同时记录所有斯托克斯参数。该设备没有移动部件,也不需要扫描,从而能够在不产生通常与扫描偏振计相关的运动伪像的情况下获取数据。除了快照成像和静态(无移动部件)功能外,图像处理简单,并且该设备紧凑且微型化。因此,我们相信MSP - SIP将在许多应用中有用,例如遥感和生物科学。