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Microbunching-instability-induced sidebands in a seeded free-electron laser

机译:种子自由电子激光器中微束不稳定性诱导的边带

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Measurements of the multishot-averaged, soft x-ray, self-seeding spectrum at the LCLS free-electron laser often have a pedestal-like distribution around the seeded wavelength, which limits the spectral purity and can negatively affect some user applications not employing a post-undulator monochromator. In this paper, we study the origins of such pedestals, focusing on longitudinal phase space modulations produced by the microbunching instability upstream of the free-electron laser (FEL) undulator. We show from theory and numerical simulation that both energy and density modulations can induce sidebands in a high-gain, seeded FEL whose fractional strength typically grows as the square of the undulator length. The results place a tight constraint on the longitudinal phase space uniformity of the electron beam for a seeded FEL, possibly requiring the amplitude of long-wavelength modulations to be much smaller than the typical incoherent energy spread if the output sideband power is to remain only a couple percent or less of the amplified seed power.
机译:在LCLS自由电子激光器上对多次平均的软X射线自种子光谱的测量通常在种子波长附近具有类似基座的分布,这限制了光谱纯度,并且可能会对某些不使用LED的用户应用产生负面影响后起伏单色仪。在本文中,我们研究这种基座的起源,重点研究由自由电子激光(FEL)波动器上游的微束不稳定性产生的纵向相空间调制。我们从理论和数值模拟表明,能量和密度调制都可以在高增益种子FEL中诱导边带,其边际强度通常随波荡器长度的平方而增长。结果对种子FEL的电子束的纵向相空间均匀性施加了严格的约束,如果要仅保留输出边带功率,则可能要求长波调制的幅度要比典型的非相干能量扩展小得多。放大后的种子功率的百分之几或更少。

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