Du Yongzhao
College of Engineering, Huaqiao University, Quanzhou 362021, China.
Fujian Provincial Academic Engineering Research Centre in Industrial Intelligent Techniques and Systems, Huaqiao University, Quanzhou 362021, China.
Sensors (Basel). 2016 Nov 29;16(12):2014. doi: 10.3390/s16122014.
For asymmetric laser beams, the values of beam quality factor M x 2 and M y 2 are inconsistent if one selects a different coordinate system or measures beam quality with different experimental conditionals, even when analyzing the same beam. To overcome this non-uniqueness, a new beam quality characterization method named as M²-curve is developed. The M²-curve not only contains the beam quality factor M x 2 and M y 2 in the -direction and -direction, respectively; but also introduces a curve of M x α 2 versus rotation angle of coordinate axis. Moreover, we also present a real-time measurement method to demonstrate beam propagation factor M²-curve with a modified self-referencing Mach-Zehnder interferometer based-wavefront sensor (henceforth SRI-WFS). The feasibility of the proposed method is demonstrated with the theoretical analysis and experiment in multimode beams. The experimental results showed that the proposed measurement method is simple, fast, and a single-shot measurement procedure without movable parts.
对于非对称激光束,即使分析的是同一束光,如果选择不同的坐标系或在不同的实验条件下测量光束质量,光束质量因子M x 2和M y 2的值也会不一致。为了克服这种非唯一性,开发了一种名为M²曲线的新光束质量表征方法。M²曲线不仅分别包含了x方向和y方向的光束质量因子M x 2和M y 2;还引入了M x α 2随坐标轴旋转角度的曲线。此外,我们还提出了一种实时测量方法,用基于改进的自参考马赫-曾德尔干涉仪的波前传感器(以下简称SRI-WFS)来演示光束传输因子M²曲线。通过对多模光束的理论分析和实验验证了该方法的可行性。实验结果表明,所提出的测量方法简单、快速,是一种无需移动部件的单次测量过程。