Fraunhofer diffraction and the beam quality β factor of a laser beam with sinusoidal wavefront

D. A. Yagnyatinskiy, V. Fedoseyev
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Abstract

The effect of the amplitude and spatial frequency of a sinusoidal wavefront over a square aperture on the far-field diffraction pattern is considered for a laser beam. An analytical solution of the Fraunhofer diffraction problem for a 2D sinusoidal wavefront over a rectangular aperture with an arbitrary integer number of periods along each side is derived using an original technique. The result coincides with high accuracy with a numerical solution obtained using the Fast Fourier Transform. It has been shown that after correcting the second-order Zernike modes by a stacked array piezoelectric deformable mirror with different numbers and patterns of control actuators, the residual wavefront aberrations may be considered approximately sinusoidal. Therefore, the results for an ideal sinusoidal wavefront could be applied to a real residual wavefront in problems of adaptive optics. For sinusoidal aberrations, the so-called beam quality β factor has been shown to increase sharply as the root-mean-square wavefront error (RMS) passes certain values. A new criterion of wavefront quality for sinusoidal and residual aberrations over a square aperture has been proposed.
正弦波前激光束的夫琅和费衍射与光束质量β因子
研究了方形孔径上正弦波前的幅值和空间频率对激光远场衍射图的影响。本文用一种新颖的方法导出了沿任意整数周期的矩形孔径上二维正弦波前的夫琅和费衍射问题的解析解。结果与利用快速傅里叶变换得到的数值解具有较高的精度。结果表明,采用不同数量和类型的压电变形镜对二阶Zernike模式进行校正后,残余波前像差可以近似视为正弦。因此,理想正弦波前的结果可以应用于自适应光学问题中的实际残余波前。对于正弦像差,当均方根波前误差(RMS)超过一定值时,所谓的波束质量β因子急剧增加。提出了一种新的方波孔径正弦像差和残余像差的波前质量判据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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