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Influence of the beam shape on aperture measurements with the laser beam scanning technique

机译:光束形状对激光扫描技术对孔径测量的影响

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摘要

The realization of a number of radiometric and photometric units requires one to measure accurately the area of precision apertures. The BIPM employs the laser-beam scanning technique which is based on the generation of a uniform irradiance by a two-dimensional superposition of many regularly spaced laser beams. The existing literature describes the formation of the uniform irradiance as a superposition of Gaussian laser beams and derives a condition for the largest allowable lattice spacing to obtain the necessary uniformity. In this paper we analyse the effect of the use of real laser beams which are almost, but not completely, Gaussian by applying Fourier analysis. Experimental results of aperture measurements with different spacings of the laser beams are also shown. The results of the calculations and the measurements show a characteristic dependence of the measured area on the grid spacing, even for spacings sufficiently small according to the condition based on Gaussian theory. This can be explained by very small deviations of the actual beam shape from a perfect Gaussian profile.
机译:要实现许多辐射度和光度学单位,就需要精确测量精密孔径的面积。 BIPM采用激光束扫描技术,该技术基于许多规则间隔的激光束的二维叠加产生均匀的辐照度。现有文献将均匀辐照度的形成描述为高斯激光束的叠加,并得出最大允许晶格间距以获得必要均匀性的条件。在本文中,我们通过应用傅立叶分析来分析使用接近但不是完全高斯的真实激光束的效果。还显示了具有不同激光束间距的孔径测量的实验结果。计算和测量的结果表明,即使对于根据基于高斯理论的条件而言足够小的间距,所测量的面积也与栅格间距具有特征相关性。这可以通过实际光束形状与理想高斯轮廓的很小偏差来解释。

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