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Requirements on the LWFA electron beam for the user- oriented photon source.

机译:面向用户的光子源对LWFA电子束的要求。

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摘要

The laser-driven Undulator X-ray source (LUX) is designed to be a user beamline providing ultra-short EUV photon pulses with a central wavelength tuneable in the range of 0.4 to 4.5 nm and a peak brilliance of up to 10~(21) photons/(s.mrad~2.mm~2.0.1% B.W.), which makes this source comparable with modern synchrotron sources. The source shall provide a focal spot size well below 10 μm and a range of auxiliary beams for complex pump-and-probe experiments and it is also an important experimental milestone towards a future laser driven Free Electron Laser. Unique femtosecond nature of the laser-plasma electron acceleration in combination with extremely small transverse emittance of the electron beam is the major advantage of the LWFA technique. Preservation of the electron beam quality is a complicated task for a dedicated electron beam line, which has to be designed to transport the electron beam from the LWFA source up to the undulator. In this report we discuss main requirements on the LWFA source and the electron beam optics of the LUX source and solutions to produce required quality photon beam in the undulator and we also discuss the effect of realistic setup parameters on the quality of the electron beam in the undulator within the range of systematic errors.
机译:激光驱动的Undulator X射线源(LUX)被设计为用户光束线,可提供超短EUV光子脉冲,其中心波长可在0.4至4.5 nm范围内调节,峰值亮度可达10〜(21) )光子/(s.mrad~2.mm~2.0.1% BW),这使得该光源可与现代同步加速器光源媲美。该光源应提供远低于10μm的焦点尺寸和一系列辅助光束,以进行复杂的泵浦和探针实验,这也是未来激光驱动的自由电子激光器的重要实验里程碑。 LWFA技术的主要优点是,激光等离子电子加速具有独特的飞秒特性,同时电子束的横向发射极小。对于专用的电子束线,保存电子束质量是一项复杂的任务,必须将其设计为将电子束从LWFA源传输到波荡器。在本报告中,我们讨论了对LWFA源和LUX源的电子束光学器件的主要要求,以及在波荡器中产生所需质量的光子束的解决方案,并且还讨论了实际设置参数对电子束质量的影响。系统误差范围内的波动器。

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