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一种多棱镜组合设计优化图像干涉性能的新方法
作者姓名:Zhang P  Wang JR  Zhang GC  Hou W
作者单位:1. 中北大学电子测试技术国家重点实验室,山西太原,030051
2. 太原科技大学应用科学院,山西太原,030024
基金项目:国家自然科学基金(50875248); 山西省自然科学基金项目(200911026-2)资助
摘    要:为了在不影响干涉条纹成像质量的基础上通过增大双折射棱镜结构角的方法获得更细致的光谱成分,优化设计了双折射棱镜的结构.通过计算分束角与结构角之间的函数关系,分析得知在传统双折射棱镜后附加一个与第二个楔形同性质的等腰三角形棱镜,使出射棱镜的o光和e光平行于光轴,即分束角α为0°,从而干涉条纹的成像不再受分束角的变化所影响....

关 键 词:光谱探测  多棱镜组合  分束角  图像干涉

Research on improving spectrum resolution of optimized Wollaston prism array
Zhang P,Wang JR,Zhang GC,Hou W.Research on improving spectrum resolution of optimized Wollaston prism array[J].Spectroscopy and Spectral Analysis,2011,31(11):3163-3166.
Authors:Zhang Peng  Wang Jian-Rong  Zhang Guo-Chen  Hou Wen
Institution:ZHANG Peng1,WANG Jian-rong2,ZHANG Guo-chen2,HOU Wen1 1.National Key Laboratory for Electronic Measurement Technology,North University of China,Taiyuan 030051,China 2.School of Applied Science,Taiyuan University of Science and Technology,Taiyuan 030024,China
Abstract:In order to not affect the image quality of interference fringes on the basis of the structure by increasing the structure angle of Wollaston prism to improve spectrum resolution, the authors optimized the structure of Wollaston prism. Calculating the function of the splitting angle and the structure angle, analysis indicated that taking the isosceles triangle prism with the same nature of the second wedge-shaped prism after the Wollaston prism, which makes the o and e light parallel to the optical axis, and alpha=0 degrees, the imaging interference fringes are no longer affected by changes in the splitting angle. Several optimized Wollaston prisms were made as an array to improve the spectral resolution. Experiments used traditional and optimized Wollaston prism array to detect the spectrum of the 980 nm laser. Experimental data showed that using optimized Wollaston prism array gets a clearer contrast of interference fringes, and the spectral data with Fourier transform are more accurate with DSP.
Keywords:Spectrum detection  Optimization multi-prism combined  The splitting angle  Image interference  
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