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ULTRA-HIGH BRIGHTNESS ELECTRON BEAMS BY ALL-OPTICAL PLASMA-BASED INJECTORS

机译:全光等离子体的基于外光等离子体的注射器超高亮度电子束

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We studied the generation of low emittance high current mono-energetic beams from plasma waves driven by ultra-short laser pulses, in view of achieving beam brightness of interest for FEL applications. We have studied a regime based on a LWFA plasma driving scheme on a gas jet modulated in areas of different densities with sharp density gradients. Simulations carried out using VORPAL show that, using a properly density modulated gas jet, it is possible to generate beams at energies of about 30 MeV with peak currents of 20 kA, slice transverse emittances as low as 0.3 μm and energy spread around 0.4 %. This beams break the barrier of 10~(18) A/(mm.mrad)~2 in brightness, opening a new range of opportunities for FEL applications. An example of FELs driven by such kind of beams injected into laser undulators is shown. The system constituted by the electron beam under the effect of the e.m. undulator has been named AOFEL (for All Optical Free-Electron Laser).
机译:考虑到实现FEL应用的光束亮度,我们研究了从超短激光脉冲驱动的等离子体波的低发射高电流单能度梁的产生。我们已经基于LWFA等离子体驱动方案研究了在具有尖锐密度梯度的不同密度区域的气体喷射器上的LWFA等离子体驱动方案。使用Vorpal进行的模拟表明,使用适当的密度调制的气体射流,可以在约30mev的能量下产生20ka的峰值,切片横向发射低至0.3μm,能量扩展约0.4%。该光束在亮度下打破10〜(18)A /(mm.mrad)〜2的屏障,为FEL应用开辟了新的机会。示出了由这种梁驱动的毛坯的示例,其注入激光起伏器中。由电子束构成的系统在效果下的效果。起伏器已被命名为AOFEL(对于所有光学自由电子激光器)。

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