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Characterization of non-Gaussian mid-infrared free-electron laser beams by the knife-edge method

机译:刀口法表征非高斯中红外自由电子激光束

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摘要

We report the characterization of mid-infrared free-electron laser (FEL) beams at the wavelength of 11 μm by the knife-edge method. From the knife-edge data we find that the FEL beam has a non-Gaussian shape. To represent the non-Gaussian beam shape we employ two methods: fitting the knife-edge data to some analytical functions with a few free parameters and numerical smoothing of the knife-edge data. Both methods work equally well. Using those data we can reconstruct the two-dimensional (2D) beam profiles at different positions around the focus by assuming that the 2D intensity distribution function is separable in x (horizontal) and y (vertical) directions. Using the 2D beam profiles at different positions around the focus, we find that the beam propagation factor (M~2 factor) is ~1.1 in both x and y directions. As a cross-check, we also carry out the burn pattern experiment to find that the behavior of the focused FEL beam along the propagation is consistent with the results obtained by the knife-edge method.
机译:我们通过刀口法报告了波长为11μm的中红外自由电子激光(FEL)光束的特征。从刀口数据我们发现FEL光束具有非高斯形状。为了表示非高斯光束形状,我们使用两种方法:将刀口数据拟合到具有一些自由参数的某些分析函数,并对刀口数据进行数值平滑。两种方法均能很好地工作。通过使用这些数据,我们可以假设二维强度分布函数在x(水平)和y(垂直)方向上是可分离的,从而可以在焦点周围的不同位置重建二维(2D)光束轮廓。使用焦点周围不同位置处的二维光束轮廓,我们发现在x和y方向上的光束传播因子(M〜2因子)均为〜1.1。作为交叉检查,我们还进行了燃烧模式实验,发现聚焦的FEL光束沿传播方向的行为与通过刀刃法获得的结果一致。

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