论文标题

通过时间调制的激光脉冲进行微置的不稳定性表征

Microbunching Instability Characterisation via Temporally Modulated Laser Pulses

论文作者

Brynes, A. D., Akkermans, I., Allaria, E., Badano, L., Brussaard, S., Danailov, M., Demidovich, A., De Ninno, G., Giannessi, L., Mirian, N. S., Penco, G., Perosa, G., Ribič, P. Rebernik, Roussel, E., Setija, I., Smorenburg, P., Spampinati, S., Spezzani, C., Trovò, M., Williams, P. H., Wolski, A., Di Mitri, S.

论文摘要

高亮性电子束,例如在自由电子激光器(FELS)中产生和加速的电子束,可以在纵向相空间中发展小规模结构。这会导致切片能量扩散和束的电流轮廓的变化,然后进行放大,以称为微置的不稳定性。通过在加速器的低能段中施加能量扩散调制,使用散热器chicane中心的解散器和调制激光脉冲,可以使束纵向相位空间进行分解。这允许以前所未有的细节控制和研究不稳定性。我们报告了Fermi FEL的2DSPECTRO-STOMAINAL结构域中此类调制电子束的测量和分析,用于三种不同的压缩方案。我们还对这些实验进行了相应的模拟,并表明这些代码确实能够在宽光谱范围内重现测量值。这种详细的实验验证了代码捕获微置稳定性基本光束动力学能力的能力,将有益于未来的FELS的设计和性能。

High-brightness electron bunches, such as those generated and accelerated in free-electron lasers (FELs), can develop small-scale structure in the longitudinal phase space. This causes variations in the slice energy spread and current profile of the bunch which then undergo amplification, in an effect known as the microbunching instability. By imposing energy spread modulations on the bunch in the low-energy section of an accelerator, using an undulator and a modulated laser pulse in the centre of a dispersive chicane, it is possible tomanipulate the bunch longitudinal phase space. This allows for the control and study of the instability in unprecedented detail. We report measurements and analysis of such modulated electron bunches in the 2Dspectro-temporal domain at the FERMI FEL, for three different bunch compression schemes. We also perform corresponding simulations of these experiments and show that the codes are indeed able to reproduce the measurements across a wide spectral range. This detailed experimental verification of the ability of codes to capture the essential beam dynamics of the microbunching instability will benefit the design and performance of future FELs.

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