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Compact X-ray free-electron laser based on an optical undulator

机译:基于光学波荡器的紧凑型X射线自由电子激光器

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摘要

The interaction between a very high-brightness electron beam and a relativistically intense optical laser pulse produces X-rays via coherent Thomson back scattering with FEL collective amplification. The phenomenon is, however, very selective, so that the characteristics of both electron and laser beam must satisfy tight requirements in terms of beam current, emittance, energy spread and laser amplitude stability within the pulse. The three-dimensional equations governing the radiation phenomena have been studied in both linear and non-linear regime and solved numerically for the particularly interesting values of wavelengths of 1 A, 1 and 12 nm. The performance of the collective Thomson source has been compared with that of an equivalent static undulator. A set of scaling laws ruling the phenomenon is also presented.
机译:高亮度电子束和相对论强的光学激光脉冲之间的相互作用通过相干的Thomson反散射和FEL集体放大产生X射线。但是,该现象是非常有选择性的,因此电子束和激光束的特性都必须满足严格的要求,即束电流,发射率,能量散布和脉冲内的激光振幅稳定性。已经在线性和非线性范围内研究了控制辐射现象的三维方程,并通过数值求解了特别有趣的1 A,1和12 nm波长值。汤姆逊信号源的性能已与等效静态波动器的性能进行了比较。还提出了一套控制该现象的缩放定律。

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