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Experimental results of the laserwire emittance scanner for LINAC4 at CERN

机译:CERN LINAC4的激光线发射扫描仪的实验结果

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摘要

Within the framework of the LHC Injector Upgrade (LIU), the new LINAC4 is currently being commissioned to replace the existing LINAC2 proton source at CERN. After the expected completion at the end of 2016, the LINAC4 will accelerate H− ions to 160 MeV. To measure the transverse emittance of the H− beam, a method based on photo-detachment is proposed. This system will operate using a pulsed laser with light delivered via an optical fibre and subsequently focused onto the H− beam. The laser photons have sufficient energy to detach the outer electron and create H0/e− pairs. In a downstream dipole, the created H0 particles are separated from the unstripped H− ions and their distribution is measured with a dedicated detector. By scanning the focused laser beam across the H− beam, the transverse emittance of the H− beam can be reconstructed. This paper will first discuss the concept, design and simulations of the laser emittance scanner and then present results from a prototype system used during the 12 MeV commissioning of the LINAC4.
机译:在LHC喷油器升级(LIU)的框架内,新的LINAC4目前正在调试中,以替代CERN的现有LINAC2质子源。在预计于2016年底完成后,LINAC4将使H-离子加速至160 MeV。为了测量H-光束的横向发射率,提出了一种基于光解的方法。该系统将使用脉冲激光进行操作,该脉冲激光通过光纤传输并随后聚焦到H-光束上。激光光子具有足够的能量来分离外部电子并产生H0 / e-对。在下游的偶极子中,生成的H0粒子与未剥离的H-离子分离,并使用专用检测器测量其分布。通过跨H-光束扫描聚焦的激光束,可以重建H-光束的横向发射率。本文将首先讨论激光发射扫描仪的概念,设计和仿真,然后介绍LINAC4的12 MeV调试期间使用的原型系统的结果。

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