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Beamline Design for Plasma-Wakefield Acceleration Experiments at MAX IV

机译:MAX IV等离子韦克菲尔德加速实验的光束线设计

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The MAX IV Laboratory is a synchrotron radiation user facility located just outside the city of Lund, Sweden. The facility is made up of two storage rings, at 3 GeV and 1.5 GeV, respectively, and a linear accelerator, serving as a full-energy injector for the rings as well as a driver for the Short-Pulse Facility (SPF) located downstream of the extraction point to the 3 GeV ring. Recently, as part of the Soft X-ray Laser (SXL) project, a design study towards using the linac as a soft X-ray free-electron laser (FEL) driver was started. Part of the study is the design and commissioning of a diagnostics beamline based on a Transverse Deflecting Structure (TDS). Moreover, the PlasMAX collaboration is working towards using the MAX IV linac also for beam-driven plasma-wakefield (PWFA) experiments. Therefore, the design of the diagnostics beamline is being done to also accommodate an interaction chamber and final focusing, located upstream of the TDS. This proceeding details the current status of the beamline design and shows some preliminary single- and double-bunch current measurements.
机译:Max IV实验室是位于瑞典隆德市外的同步辐射用户设施。该设施分别由两个储存环,3 GEV和1.5 GEV组成,以及线性加速器,用作环的全能注射器,以及位于下游的短脉冲设施(SPF)的驱动器提取点到3个GEV环。最近,作为软X射线激光器(SXL)项目的一部分,开始使用LINAC作为软X射线自由电子激光器(FEL)驱动器的设计研究。部分研究是基于横向偏转结构(TDS)的诊断束线的设计和调试。此外,Plasmax协作正在朝向使用MAX IV LINAC进行光束驱动的等离子体唤醒域(PWFA)实验。因此,正在进行诊断束线的设计,以适应位于TD的上游的相互作用室和最终聚焦。此操作详细信息光束线设计的当前状态,并显示了一些初步的单串和双束电流测量。

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