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首页> 外文期刊>New journal of physics >Coulomb interaction-induced jitter amplification in RF-compressed high-brightness electron source ultrafast electron diffraction
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Coulomb interaction-induced jitter amplification in RF-compressed high-brightness electron source ultrafast electron diffraction

机译:RF压缩高亮度电子源超快电子衍射中的库仑相互作用诱导的抖动放大

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We have theoretically and experimentally demonstrated an RF compression-based jitter-amplification effect in high-brightness electron source ultrafast electron diffraction (UED), which degrades the temporal resolution significantly. A detailed analysis and simulations reveal the crucial role of the longitudinal and transverse Coulomb interaction for this jitter-amplification effect, which accord very well with experimental results. An optimized compact UED structure for full compression has been proposed, which can suppress the jitter by half and improve the temporal resolution to sub-100 fs. This Coulomb interaction-induced jitter amplification exists in nearly the whole ultrafast physics field where laser-electron synchronization is required. Moreover, it cannot be suppressed completely. The quantified explanation for the mechanism and optimization provides important guidance for photocathode accelerators and other compression-based ultrashort electron pulse generation and precise control.
机译:我们已经在理论上和实验上证明了在高亮度电子源超快电子衍射(UED)中基于RF压缩的抖动放大效应,这会大大降低时间分辨率。详细的分析和仿真揭示了纵向和横向库仑相互作用对于这种抖动放大效应的关键作用,这与实验结果非常吻合。提出了一种用于全压缩的优化紧凑型UED结构,该结构可以将抖动降低一半,并将时间分辨率提高到100fs以下。这种库仑相互作用引起的抖动放大几乎存在于需要激光-电子同步的整个超快物理学领域。而且,它不能被完全抑制。机理和优化的量化解释为光阴极加速器和其他基于压缩的超短电子脉冲的产生和精确控制提供了重要的指导。

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