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Effect of Partial Coherence illuminated bar on evaluation technique of diffraction image

机译:偏相识位照明条对衍射图像评估技术的影响

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摘要

In this work, we are obviously interested in a general solution for the calculation of the image of a single bar in partially coherent illumination. The solution is based on the theory of Hopkins for the formation of images in optical instruments in which it was shown that for all practical cases, the illumination of the object may be considered as due to a self – luminous source placed at the exit pupil of the condenser , and the diffraction integral describing the intensity distribution in the image of a single bar – as an object with half – width (U0 = 8 ) and circular aperture geometry is viewed , which by suitable choice of the coherence parameters (S=0.25,1.0.4.0) can be fitted to the observed distribution in various types of microscope , the aberration were restricted to defocusing and coma upto third – order , the method of integration was Gauss quadrature: The necessary set of integration depends , of course , on the amount of present aberrations and had to be chosen (20) points of Gauss which decrease the computation time to few seconds: The aberration free systems corresponding to the paraxial receiving plane (W20= 0.0) is especially interesting as it predicts diffraction pattern shape. The influence of defocusing is very pronounced and relatively distorts the object , the influence of the off – axis aberration (third – order coma ), in which it was shown that for the high peaks in the images are most noticeable in the region of almost perfect coherence (S=0.25). As (S) is increased from (0.25) to (1.0) there is a pronounced redistribution of intensity, with peaks moving from one side of the image to the other. Calculations were also performed for systems having spherical aberration, but the results are qualitatively similar to an aberration – free defocused system and are omitted, so we will not present any numerical results. A computer program was written in FORTRAN 77 which solved the modified intensity distribution of Hopkins for(U´) dimensionless distance. The advantage of that additional work on this class of problems to investigate the development of more efficient numerical methods, also the reduction in computation time to few seconds for data runs for individual curves of intensity.
机译:在这项工作中,我们显然对一个通用解决方案来计算部分相干照明的单个杆的图像。该解决方案基于霍普金斯的理论,用于在光学仪器中形成图像,其中显示用于所有实际情况,物体的照明可以被认为是由于放置在出口瞳孔处的自发光源将冷凝器和描述单个条图像中的强度分布的衍射积分 - 作为具有半宽度(U0 = 8)和圆形孔径几何形状的物体,这通过合适的相干参数(S = 0.25 ,1.0.4.0)可以安装在各种类型的显微镜下观察到的分布,差距仅限于散焦和昏迷,达到三阶,集成方法是高斯正交的方法:必要的一组整合取决于,当然,当然取决于当前像差的量,并且必须选择(20)的高斯,这减少了几秒钟的计算时间:与近轴接收平面相对应的像差系统(W20 = 0.0)特别有趣,因为它预测衍射图案形状。散焦的影响非常明显,对象相对扭曲,对象的影响(三阶昏迷),其中显示用于图像中的高峰在几乎完美的区域中最有明显的一致性(S = 0.25)。由于(S)从(0.25)增加到(1.0),强度有明显的重新分布,峰值从图像的一侧移动到另一侧。还对具有球面像差的系统进行计算,但结果与无像差离焦系统定性类似,并且省略了,因此我们不会呈现任何数值结果。在Fortran 77中写了计算机程序,该方法解决了霍普金斯的修改强度分布(U')无量纲距离。这种额外工作的优势在这类问题上调查了更有效的数字方法的开发,也减少了计算时间几秒钟,用于各个强度的各个曲线运行。

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    Baghdad Science Journal;

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  • 年度 2010
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