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首页> 外文期刊>Journal of synchrotron radiation >Undulator beamline optimization with integrated chicanes for X-ray free-electron-laser facilities
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Undulator beamline optimization with integrated chicanes for X-ray free-electron-laser facilities

机译:用于X射线自由电子激光设备的集成斜锥的波荡器光束线优化

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摘要

An optimization of the undulator layout of X-ray free-electron-laser (FEL) facilities based on placing small chicanes between the undulator modules is presented. The installation of magnetic chicanes offers the following benefits with respect to state-of-the-art FEL facilities: reduction of the required undulator length to achieve FEL saturation, improvement of the longitudinal coherence of the FEL pulses, and the ability to produce shorter FEL pulses with higher power levels. Numerical simulations performed for the soft X-ray beamline of the SwissFEL facility show that optimizing the advantages of the layout requires shorter undulator modules than the standard ones. This proposal allows a very compact undulator beamline that produces fully coherent FEL pulses and it makes possible new kinds of experiments that require very short and high-power FEL pulses.
机译:提出了一种基于在起伏器模块之间放置小锥角的X射线自由电子激光(FEL)设备的起伏器布局的优化方法。相对于最新的FEL设施,安装磁锥具有以下好处:减少所需的起伏器长度以实现FEL饱和,改善FEL脉冲的纵向相干性以及产生更短FEL的能力具有较高功率水平的脉冲。对SwissFEL设施的软X射线束线进行的数值模拟表明,优化布局的优势需要比标准组件短的起伏器模块。该提议允许产生非常相干的FEL脉冲的非常紧凑的波状起伏器光束线,并且使得需要极短且高功率FEL脉冲的新型实验成为可能。

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