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Research on propagation characteristic of radial array beams generated by radial array laser through misalignment optical system

机译:径向阵列激光器未对准光学系统产生的径向阵列光束的传播特性研究

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摘要

The analytical formula of radial array beams generated by radial array laser through misalignment of optical system is derived by using the diffraction integral equation. The propagation characteristics of radial array beams converged by the convergent optical system are studied. As the numerical examples, the influences of the two main parameters (the misalignment line deviation and angle deviation) on the light intensity are analyzed in detail. It is shown that the misalignment will lead to the increase of the light intensity of longitudinal lower-order Hermite-Gaussian beams (for example m=l, n=0), and the maximum light intensity (MLI) of the big misalignment (line deviation is 2 mm) is about 2 times higher than the small misalignment (line deviation is 1 mm). However, it will decrease for the transversal lower-order Hermite-Gaussian beams (for example m=0, n=l), and MLI of the small misalignment (line deviation is 1 mm) is about 2 times higher than the big misalignment (line deviation is 2 mm). The results are important for the laser rapid processing and high precision machining.
机译:利用衍射积分方程推导了径向阵列激光器通过光学系统失准产生的径向阵列光束的解析公式。研究了会聚光学系统会聚的径向阵列光束的传播特性。作为数值示例,详细分析了两个主要参数(未对准线偏差和角度偏差)对光强度的影响。结果表明,失准将导致纵向低阶厄米-高斯光束的光强度增加(例如m = l,n = 0),并且导致大失准(线)的最大光强度(MLI)偏差为2毫米)大约比小偏差(线偏差为1毫米)高2倍。但是,对于横向低阶厄米-高斯光束(例如m = 0,n = l),它会减小,并且较小的未对准(线偏差为1 mm)的MLI大约比较大的未对准的MLI高2倍(线偏差为2毫米)。结果对于激光快速加工和高精度加工非常重要。

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