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Narrow spread electron beams from a laser-plasma wakefield accelerator

机译:来自激光等离子体韦克菲尔德加速器的窄扩散电子束

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The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing laserplasma accelerators for the production of ultra-short electron bunches with subsequent generation of incoherent radiation pulses from plasma and coherent short-wavelength radiation pulses from a free-electron laser (FEL). The first quantitative measurements of the electron energy spectra have been made on the University of Strathclyde ALPHA-X wakefield acceleration beam line. A high peak power laser pulse (energy 900 mJ, duration 35 fs) is focused into a gas jet (nozzle length 2 mm) using an F/16 spherical mirror. Electrons from the laser-induced plasma are self-injected into the accelerating potential of the plasma density wake behind the laser pulse. Electron beams emitted from the plasma have been imaged downstream using a series of Lanex screens positioned along the beam line axis and the divergence of the electron beam has been measured to be typically in the range 1-3 mrad. Measurements of the electron energy spectrum, obtained using the ALPHA-X high resolution magnetic dipole spectrometer, are presented. The maximum central energy of the monoenergetic beam is 90 MeV and r.m.s. relative energy spreads as low as 0.8% are measured. The mean central energy is 82 MeV and mean relative energy spread is 1.1%. A theoretical analysis of this unexpectedly high electron beam quality is presented and the potential impact on the viability of FELs driven by electron beams from laser wakefield accelerators is examined.
机译:向X射线(alpha-X)程序的高级激光等离子高能量加速器正在开发用于生产超短电子束的LasterPlasma促进剂,随后产生来自等离子体的相干辐射脉冲的后续发电辐射脉冲自由电子激光器(FEL)。已经在Strathclyde Alpha-X Wakefield加速度束线上进行了电子能谱的第一定量测量。使用F / 16球形镜将高峰功率激光脉冲(能量900MJ,持续时间35fs)聚焦到气体射流(喷嘴长度2mm)中。来自激光诱导的等离子体的电子自我注入到激光脉冲后面的等离子体密度唤醒的加速潜力中。从等离子体发出的电子束已经使用沿着梁线轴定位的一系列LANEX屏幕成像,并且已经测量了电子束的发散通常在1-3mrad的范围内。呈现了使用Alpha-X高分辨率磁偶极光谱仪获得的电子能谱的测量。单元梁的最大中心能量为90 mev和r.m.s.测量相对能量低至0.8%的能量。平均中央能量为82meV,平均相对能量扩散为1.1%。提出了对这种意外的高电子束质量的理论分析,并且研究了对来自激光韦克菲尔德促进剂的电子束驱动的纤维驱动的电轴的能力的潜在影响。

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