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Propagation and Wigner distribution of the Airy-Gauss beam through an apertured paraxial optical system

机译:通气高斯梁通过开孔近轴光学系统的传播和Wigner分布

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摘要

By applying the Collins-Fresnel diffraction integral formula and expanding the hard-edge aperture function into the approximate finite sum of complex Gaussian functions, we can obtain the approximate closed-form analytical expressions of the Airy-Gauss beam passing through a hard-edge aperture. The numerical results show the feasibility of the approximate process. We investigate the irradiance distribution and the Wigner distribution of the Airy-Gauss beam for different aperture calibers. It is shown that the diffraction effect reduces when the width of the aperture increases. Moreover, some properties of the Airy-Gauss beam are lost when the width of the aperture decreases. Besides, we find that when the distribution factor increases, the Airy-Gauss beam would reduce to the Gauss beam.
机译:通过将柯林塞菲涅耳衍射积分公式应用于近似有限之和复合高斯函数的近似有限和,我们可以获得穿过硬边孔径的通风高斯梁的近似闭合形式的分析表达式 。 数值结果显示了近似过程的可行性。 我们研究了不同孔径光纤的辐照度分布和空气高斯梁的Wigner分布。 结果表明,当孔的宽度增加时,衍射效果减小。 此外,当孔径的宽度减小时,通气高斯梁的一些性质丢失。 此外,我们发现当分配因子增加时,通风高斯梁将减少到高斯梁。

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