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Fresnel diffraction analysis of Ronchi and reverse Hartmann tests

机译:RONCHI的菲涅耳衍射分析和反向HARTMANN测试

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This paper presents a Fresnel diffraction analysis of classical Ronchi and reverse Hartmann tests. Simplified analytical expressions of the intensity patterns observed by the camera are established, allowing quantitative measurements of the wavefront slopes of the tested optical system. The wavefronts are then reconstructed from their slopes using a double Fourier transform algorithm. The optimization of the operational parameters of the system is discussed in view of different quality criteria, including relative pupil shear and contrast factors in both monochromatic and polychromatic light. Practical examples of applications are studied with the help of numerical simulations, demonstrating that measurement accuracies better than lambda/100 RMS are achievable on properly dimensioned systems. Finally, the technique is also applicable to wavefront sensing in adaptive optics systems. (C) 2018 Optical Society of America
机译:本文介绍了经典RONCHI的菲涅耳衍射分析和反向HARTMANN测试。 建立由相机观察到的强度图案的简化分析表达式,允许测试光学系统的波前斜率的定量测量。 然后使用双傅立叶变换算法从其斜坡重建波前。 考虑到不同的质量标准,包括单色和多色光中的相对瞳孔剪切和对比因子,讨论了系统的操作参数的优化。 在数值模拟的帮助下,研究了应用的实际例子,证明了比Lambda / 100 rms更好的测量精度在适当的尺寸的系统上可以实现。 最后,该技术也适用于自适应光学系统中的波前感。 (c)2018年光学学会

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