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首页> 外文期刊>Scientific reports. >Intrinsic energy spread and bunch length growth in plasma-based accelerators due to betatron motion
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Intrinsic energy spread and bunch length growth in plasma-based accelerators due to betatron motion

机译:由于Betatron Motion,基于等离子体的加速器的内在能量扩散和束宽度增长

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摘要

Plasma-based accelerators (PBAs), having demonstrated the production of GeV electron beams in only centimetre scales, offer a path towards a new generation of highly compact and cost-effective particle accelerators. However, achieving the required beam quality, particularly on the energy spread for applications such as free-electron lasers, remains a challenge. Here we investigate fundamental sources of energy spread and bunch length in PBAs which arise from the betatron motion of beam electrons. We present an analytical theory, validated against particle-in-cell simulations, which accurately describes these phenomena. Significant impact on the beam quality is predicted for certain configurations, explaining previously observed limitations on the achievable bunch length and energy spread. Guidelines for mitigating these contributions towards high-quality beams are deduced.
机译:基于等离子体的加速器(PBA),证明仅在仅厘米级别的GEV电子束的生产,提供了新一代高度紧凑且经济高效的粒子加速器的路径。然而,实现所需的光束质量,特别是对自由电子激光器如自由电子激光器的应用仍然是一个挑战。在这里,我们研究了从光束电子的β脱离运动产生的PBA中的能量扩散和束长的基本来源。我们提出了一种分析理论,验证了针对粒子内模拟的验证,该模拟精确描述了这些现象。对于某些配置预测了对光束质量的显着影响,解释了先前观察到可实现的束长度和能量扩散的限制。推导出用于减轻对高质量梁的这些贡献的指导方针。

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