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Absolute energy calibration for relativistic electron beams with pointing instability from a laser-plasma accelerator

机译:相对性电子束的绝对能量校准,激光等离子加速器指向不稳定性

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摘要

The pointing instability of energetic electron beams generated from a laser-driven accelerator can cause a serious error in measuring the electron spectrum with a magnetic spectrometer. In order to determine a correct electron spectrum, the pointing angle of an electron beam incident on the spectrometer should be exactly defined. Here, we present a method for absolutely calibrating the electron spectrum by monitoring the pointing angle using a scintillating screen installed in front of a permanent dipole magnet. The ambiguous electron energy due to the pointing instability is corrected by the numerical and analytical calculations based on the relativistic equation of electron motion. It is also possible to estimate the energy spread of the electron beam and determine the energy resolution of the spectrometer using the beam divergence angle that is simultaneously measured on the screen. The calibration method with direct measurement of the spatial profile of an incident electron beam has a simple experimental layout and presents the full range of spatial and spectral information of the electron beams with energies of multi-hundred MeV level, despite the limited energy resolution of the simple electron spectrometer.
机译:由激光驱动的加速器产生的高能电子束的指向不稳定性会导致在使用磁谱仪测量电子光谱时出现严重的误差。为了确定正确的电子光谱,应准确定义入射在光谱仪上的电子束的指向角。在这里,我们提出一种通过使用安装在永久偶极磁体前面的闪烁屏监控指向角来绝对校准电子光谱的方法。通过基于电子运动的相对论方程的数值和解析计算,可以校正由于指向不稳定性引起的模糊电子能量。还可能使用在屏幕上同时测量的电子束发散角来估计电子束的能量散布并确定光谱仪的能量分辨率。直接测量入射电子束空间轮廓的校准方法具有简单的实验布局,并且尽管能量分辨率有限,但仍可显示能量为数百MeV的电子束的空间和光谱信息的完整范围。简单电子光谱仪。

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