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首页> 外文期刊>Applied optics >ASYMMETRIC LINE SHAPES OF THE INSTRUMENTAL FUNCTION FOUND IN TWO-ETALON SYSTEMS WITH A FINITE FIELD OF VIEW
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ASYMMETRIC LINE SHAPES OF THE INSTRUMENTAL FUNCTION FOUND IN TWO-ETALON SYSTEMS WITH A FINITE FIELD OF VIEW

机译:具有有限视场的两个阶梯系统中仪器功能基础的不对称线形

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The instrumental functions of the two-etalon system with a finite field of view have been examined in cases in which both etalons are inclined against the optical axis. The average transmittances of the rays in the finite field of view are obtained by numerical integration. It is shown that the line shape of the instrumental function becomes asymmetric, varying not only with the zenith angles of the symmetry axes of the two etalons but also with their azimuth angles. Experimental measurements of line shapes with the He-Ne laser show the asymmetric feature predicted by the calculation. The simulation calculations for the two-pass etalon system are also carried out and show a drastic discrepancy in transmittances between azimuth angle differences of 0 degrees and 180 degrees. (C) 1996 Optical Society of America [References: 23]
机译:在两个标准具都相对于光轴倾斜的情况下,已经检验了具有有限视场的双标准具系统的仪器功能。通过数值积分获得有限视野中光线的平均透射率。结果表明,工具功能的线形变得不对称,不仅随两个标准具的对称轴的天顶角变化,而且随其方位角变化。用氦氖激光器对线形进行的实验测量显示了通过计算预测的不对称特征。还进行了两遍标准具系统的仿真计算,结果表明在0度和180度方位角差之间的透射率存在巨大差异。 (C)1996年美国眼镜学会[参考文献:23]

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