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Scale factor correction for Gaussian beam truncation in second moment beam radius measurements

机译:高斯光束截断在第二矩光束半径测量中的比例因子校正

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摘要

Charged-couple devices (CCD) and complementary metal oxide semiconductor (CMOS) image sensors, in conjunction with the second moment radius analysis method, are effective tools for determining the radius of a laser beam. However, the second moment method heavily weights sensor noise, which must be dealt with using a thresholding algorithm and a software aperture. While these noise reduction methods lower the random error due to noise, they simultaneously generate systematic error by truncating the Gaussian beam's edges. A scale factor that is invariant to beam ellipticity and corrects for the truncation of the Gaussian beam due to thresholding and the software aperture has been derived. In particular, simulations showed an order of magnitude reduction in measured beam radius error when using the scale factor-irrespective of beam ellipticity-and further testing with real beam data demonstrated that radii corrected by the scale factor are independent of the noise reduction parameters. Thus, through use of the scale factor, the accuracy of beam radius measurements made with a CCD or CMOS sensor and the second moment are significantly improved.
机译:电荷耦合器件(CCD)和互补金属氧化物半导体(CMOS)图像传感器结合第二矩半径分析方法,是确定激光束半径的有效工具。但是,第二矩方法会严重权衡传感器噪声,必须使用阈值算法和软件孔径对其进行处理。尽管这些降噪方法降低了由于噪声引起的随机误差,但它们同时通过截断高斯光束的边缘而产生系统误差。已经得出了一个不变的比例因子,该比例因子对于光束椭圆度是不变的,并且可以校正由于阈值和软件孔径引起的高斯光束的截断。尤其是,仿真显示,使用比例因子时,无论束椭圆度如何,所测得的束半径误差都会降低一个数量级,并且对实际光束数据的进一步测试表明,由比例因子校正的半径与降噪参数无关。因此,通过使用比例因子,使用CCD或CMOS传感器进行的光束半径测量的精确度和第二矩得到了显着提高。

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