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激光光束轮廓仪校准标准:使用菲涅耳衍射测试图案进行绝对精度测量的方法。

Calibration standard for laser beam profilers: method for absolute accuracy measurement with a Fresnel diffraction test pattern.

作者信息

Johnston T F, Fleischer J M

出版信息

Appl Opt. 1996 Apr 1;35(10):1719-34. doi: 10.1364/AO.35.001719.

Abstract

The absolute accuracy of a clip-level laser beam profiler is measured to the 0.3% level, by comparison of the profiler's reading to the known width of a Fresnel diffraction test pattern. A pair of opposed knife edges, illuminated by a quasi-uniform and quasi-plane wave, generates the pattern whose width is determined by the 50% cut points in translating the edge pair across a tightly focused beam. The convolution of the scanning aperture with the diffraction fringe pattern is modeled to remove the effect of the aperture size from the accuracy test and to give a means of measuring the aperture width. Discussions of the experimental aspects of this test method show it to be an acceptable calibration standard for optical profilers, of use to those working on the International Standards Organization draft standard for laser beam parameter measurements.

摘要

通过将激光束轮廓仪的读数与菲涅耳衍射测试图案的已知宽度进行比较,测得夹子级激光束轮廓仪的绝对精度达到0.3%的水平。一对相对的刀口由准均匀且准平面波照明,产生该图案,其宽度由在紧密聚焦光束上平移刀口对时的50%截止点确定。对扫描孔径与衍射条纹图案的卷积进行建模,以从精度测试中消除孔径大小的影响,并提供一种测量孔径宽度的方法。对该测试方法实验方面的讨论表明,它是光学轮廓仪可接受的校准标准,对参与国际标准化组织激光束参数测量标准草案工作的人员有用。

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