Demonstration of two-color x-ray FEL by laser emittance spoiler

C. Vicario, C. Arrell, S. Bettoni, A. Dax, P. Dijkstal, M. Huppert, P. Johnson, A. Lutman, E. Prat Costa, S. Reiche, A. Trisorio
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Abstract

Two-color is an emerging mode of operation in x-ray Free Electron Laser (FEL) having the potential to expand the pump and probe experiments toward fs temporal resolution and to site-selective spectroscopy. A novel and quick to setup method for two-color x-ray generation is presented here. The approach is experimentally demonstrated at the hard x-ray branch of SwissFEL (Aramis) using a laser emittance spoiler(LES). A short laser pulse is overlapped at the peak of the primary photocathode laser causing a local increase of the electron bunch emittance. In this configuration, the x-ray FEL emission occurs only for the two unspoiled parts of the bunch. Due to the fact that the electron bunch acquires an energy chirp along the acceleration, the spoiled beam produces two x-ray pulses of individual duration of few tens of fs having 1% photon energy separation and a time delay controllable up to 100 fs. Different from other techniques, the present method relies on the standard FEL configuration and it does not require a dedicated accelerator and undulator setting. With the LES, we achieved high efficiency, high energy and spectral stability paired to an independent control of the duration and of the relative intensity of the two colors. The LES enables shot-to-shot switching between one and two-color FEL and further, it is compatible with high repetition-rate FELs, as it is not associated to electron beam losses such as in other two-color methods.
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用激光发射扰流器演示双色x射线自由电子激光器
双色是x射线自由电子激光器(FEL)中一种新兴的操作模式,有可能将泵浦和探针实验扩展到时间分辨率和位置选择光谱。本文提出了一种新颖、快速的双色x射线生成方法。利用激光发射扰流器(LES)在瑞士自由电子激光器(Aramis)的硬x射线分支上进行了实验验证。在主阴极激光的峰值处重叠一个短激光脉冲,引起电子束发射度的局部增加。在这种结构中,x射线FEL发射只发生在束的两个未破坏的部分。由于电子束在加速过程中获得了能量啁啾,破坏光束产生了两个持续时间为几十fs的x射线脉冲,具有1%的光子能量分离和可控制的时间延迟高达100 fs。与其他技术不同的是,该方法依赖于标准的FEL配置,不需要专用的加速器和波动器设置。利用LES,我们实现了高效率、高能量和光谱稳定性,并对两种颜色的持续时间和相对强度进行了独立控制。LES能够在单色和双色自由电子激光器之间进行镜头对镜头切换,而且,它与高重复率的自由电子激光器兼容,因为它不像其他双色方法那样与电子束损失相关。
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