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首页> 外文期刊>Nuclear instruments and methods in physics research >Indirect self-modulation instability measurement concept for the AWAKE proton beam
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Indirect self-modulation instability measurement concept for the AWAKE proton beam

机译:AWAKE质子束的间接自调制不稳定性测量概念

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AWAKE, the Advanced Proton-Driven Plasma Wakefield Acceleration Experiment, is a proof-of-principle R&D experiment at CERN using a 400 GeV/c proton beam from the CERN SPS (longitudinal beam size σ_z = 12 cm) which will be sent into a 10m long plasma section with a nominal density of ≈7 × 10~(14) atoms/cm~3 (plasma wavelength λ_p = 1.2 mm). In this paper we show that by measuring the time integrated transverse profile of the proton bunch at two locations downstream of the AWAKE plasma, information about the occurrence of the self-modulation instability (SMI) can be inferred. In particular we show that measuring defocused protons with an angle of 1 mrad corresponds to having electric fields in the order of GV/m and fully developed self-modulation of the proton bunch. Additionally, by measuring the defocused beam edge of the self-modulated bunch, information about the growth rate of the instability can be extracted. If hosing instability occurs, it could be detected by measuring a non-uniform defocused beam shape with changing radius. Using a 1 mm thick Chromox scintillation screen for imaging of the self-modulated proton bunch, an edge resolution of 0.6 mm and hence an SMI saturation point resolution of 1.2 m can be achieved.
机译:AWAKE是先进的质子驱动等离子韦克菲尔德加速实验,是CERN在原理上的研发实验,使用了来自CERN SPS的400 GeV / c质子束(纵向束大小σ_z= 12 cm),该束将被发送到等离子截面为10m长,标称密度为≈7×10〜(14)个原子/ cm〜3(等离子波长λ_p= 1.2 mm)。在本文中,我们表明,通过测量AWAKE等离子体下游两个位置处的质子束的时间积分横向轮廓,可以推断出有关自调制不稳定性(SMI)发生的信息。特别地,我们表明,以1 mrad的角度测量散焦质子对应于具有GV / m量级的电场和质子束的完全发展的自调制。此外,通过测量自调制束的散焦光束边缘,可以提取有关不稳定性增长速率的信息。如果发生主机不稳定,可以通过测量半径变化的不均匀散焦光束形状来检测。使用1毫米厚的Chromox闪烁屏幕对自调制质子束进行成像,可以实现0.6毫米的边缘分辨率和1.2 m的SMI饱和点分辨率。

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