首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Start-To-End (S2E) simulations on microbunching instability in TESLA Test Facility Phase 2 (TTF2) project
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Start-To-End (S2E) simulations on microbunching instability in TESLA Test Facility Phase 2 (TTF2) project

机译:TESLA测试设施第2阶段(TTF2)项目中微泡不稳定性的从头到尾(S2E)模拟

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Microbunching instability in the FEL driving linac is induced by collective self-fields such as longitudinal space charge, coherent synchrotron radiation, and geometric wakefields. Our simulations are the first start-to-end simulations including all important collective self-fields from the cathode to the end of linac. In this paper, we estimate the gain of the microbunching instability in TESLA Test Facility Phase 2 linac by applying current density modulations at the cathode, and describe several new smearing effects of the microbunching instability which are not considered in the analytical gain estimation formula.
机译:FEL驱动直线加速器中的微束不稳定性是由诸如纵向空间电荷,相干同步加速器辐射和几何尾波场等集体自场引起的。我们的模拟是首次从头到尾的模拟,包括从阴极到直线加速器末端的所有重要的集体自场。在本文中,我们通过在阴极上施加电流密度调制来估计TESLA测试设备2直线加速器中微泡不稳定性的增益,并描述了微泡不稳定性的几种新涂片效应,但在分析增益估算公式中并未考虑这些现象。

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