Zeng Xiangmei, Hui Zhanqiang, Zhang Meizhi
Appl Opt. 2018 Sep 20;57(27):7667-7672. doi: 10.1364/AO.57.007667.
Under an optical system with multiple hard-edged apertures in a cylindrical coordinate system, the recurrence propagation expression is derived for the controllable dark-hollow beams (CDHBs) by expanding the hard-aperture function into a finite sum of complex Gaussian functions. Given the recurrence propagation expression, we deduce the approximate analytical expressions of the beam propagation factor M in terms of the generalized truncated second-order moments. This provides a fast algorithm for the evaluation of the beam propagation quality for CDHBs through complicated optical trains with a series of apertures. The propagation of CDHBs through a two-aperture-lens ABCD optical system serves as the special case of multi-apertured ABCD optical systems. Our numerical results suggest that a one-aperture-lens optical system reduces the beam propagation quality of CDHBs, and a two-aperture-lens optical system improves the beam propagation quality of CDHBs by selecting appropriate beam parameters and aperture parameters.
在柱坐标系下具有多个硬边光阑的光学系统中,通过将硬光阑函数展开为复高斯函数的有限和,推导了可控暗空心光束(CDHBs)的递推传播表达式。根据递推传播表达式,我们根据广义截断二阶矩推导出光束传播因子M的近似解析表达式。这为评估CDHBs通过具有一系列光阑的复杂光学系统的光束传播质量提供了一种快速算法。CDHBs通过双光阑透镜ABCD光学系统的传播是多孔径ABCD光学系统的特殊情况。我们的数值结果表明,单光阑透镜光学系统会降低CDHBs的光束传播质量,而双光阑透镜光学系统通过选择合适的光束参数和光阑参数可以提高CDHBs的光束传播质量。