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Simulation of FEL pulse length calculation with THz streaking method

机译:THz条纹法计算FEL脉冲长度的仿真

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摘要

Having accurate and comprehensive photon diagnostics for the X-ray pulses delivered by free-electron laser (FEL) facilities is of utmost importance. Along with various parameters of the photon beam (such as photon energy, beam intensity, etc.), the pulse length measurements are particularly useful both for the machine operators to measure the beam parameters and monitor the stability of the machine performance, and for the users carrying out pump–probe experiments at such facilities to better understand their measurement results. One of the most promising pulse length measurement techniques used for photon diagnostics is the THz streak camera which is capable of simultaneously measuring the lengths of the photon pulses and their arrival times with respect to the pump laser. This work presents simulations of a THz streak camera performance. The simulation procedure utilizes FEL pulses with two different photon energies in hard and soft X-ray regions, respectively. It recreates the energy spectra of the photoelectrons produced by the photon pulses and streaks them by a single-cycle THz pulse. Following the pulse-retrieval procedure of the THz streak camera, the lengths were calculated from the streaked spectra. To validate the pulse length calculation procedure, the precision and the accuracy of the method were estimated for streaking configuration corresponding to previously performed experiments. The obtained results show that for the discussed setup the method is capable of measuring FEL pulses with about a femtosecond accuracy and precision.
机译:对由自由电子激光(FEL)设施传送的X射线脉冲进行准确而全面的光子诊断至关重要。连同光子束的各种参数(例如光子能量,束强度等)一起,脉冲长度测量对于机器操作员测量束参数和监控机器性能的稳定性以及对用户在此类设施中进行泵浦探针实验,以更好地了解他们的测量结果。 THz条纹相机是用于光子诊断的最有希望的脉冲长度测量技术之一,它能够同时测量相对于泵浦激光器的光子脉冲的长度及其到达时间。这项工作提出了太赫兹条纹相机性能的模拟。模拟过程分别在硬X射线和软X射线区域利用具有两种不同光子能量的FEL脉冲。它重新创建由光子脉冲产生的光电子的能谱,并通过单周期THz脉冲对它们进行条纹化。按照THz条纹相机的脉冲检索程序,从条纹光谱中计算出长度。为了验证脉冲长度计算过程,估计了该方法的精度和准确性,以进行与先前进行的实验相对应的条纹配置。获得的结果表明,对于所讨论的设置,该方法能够以大约飞秒的精度和精度来测量FEL脉冲。

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