A SIMPLE GRAPHIC METHOD FOR ANALYZING THE POLARIZATION STATE OF AN OPTICAL SYSTEM WITH A FIXED POLARIZER AND A ROTATING ELLIPTICAL RETARDER

Nan Wang, Sailing He
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Abstract

The trajectory of the polarization state of a monochromatic beam passing through a fixed linear polarizer and a rotating elliptical retarder on the Poincaré sphere is found to be a threedimensional 8-shaped contour, which is determined as the line of intersection of a right-circular cylinder with the Poincaré sphere. The cylinder is parallel to the S3 axis, and the projection of the contour on the S1S2 plane is a circle whose center and radius are determined. A method of projecting the three-dimensional geometric relationships to the two-dimensional S1S2 plane to locate the position of the polarization state of the emerging beam on the Poincaré sphere for a given azimuth of the elliptical retarder is presented, and applied to solve a problem of polarization optics. The proposed graphic method substantially simplifies the polarization state analysis involving elliptical retarders.
一种分析具有固定偏振片和旋转椭圆缓速器的光学系统偏振态的简单图解方法
发现单色光束通过固定的直线偏振器和旋转的椭圆减振器在庞卡罗莱球上的偏振态轨迹是一个三维的8形轮廓,它被确定为一个右圆柱与庞卡罗莱球的交点线。圆柱体平行于S3轴,轮廓在S1S2平面上的投影是一个圆心和半径已确定的圆。提出了一种将三维几何关系投影到二维S1S2平面上的方法,以确定给定椭圆缓速器方位角下出射光束在庞加莱球上的偏振态位置,并将其应用于偏振光学问题的求解。所提出的图解法大大简化了椭圆缓速器的偏振态分析。
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