Laser wake field acceleration in bubble regime: quasi-monoenergetic electron bunches and flashes of synchrotron radiation

A. Pukhov, S. Kiselev, I. Kostyukov, J. Meyer-ter-Vehn
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Abstract

Using our 3D PIC code VLPL (Virtual Laser-Plasma Laboratory) we study Laser-Wake Field Acceleration (LWFA) of electrons by laser pulses shorter than or comparable with the plasma wavelength. When driven into the highly non-linear wave breaking regime the plasma wave mutates to a solitary bubble that generates ultra-short dense bunches of electrons with quasi-monoenergetic energy spectra. The electron bunches may have density high enough to forward-scatter the tail of the laser pulse. The forward scattering results in blue shift of the laser pulse after interaction. The energetic electrons make betatron oscillations in transverse fields of the plasma wave and emit hard X- and γ-rays. We show that an extremely bright source of GeV γ-quanta can be built due to the combination of an external electron beam and the laser wake field. The GeV γ-source can be particularly used as an efficient plant for positron production.
气泡状态下的激光尾流场加速:准单能电子束和同步辐射闪光
利用我们的三维PIC代码VLPL(虚拟激光等离子体实验室),我们研究了短于或与等离子体波长相当的激光脉冲对电子的激光尾迹场加速(LWFA)。当进入高度非线性破波状态时,等离子体波突变为孤泡,产生具有准单能能谱的超短密集电子束。电子束的密度可能高到足以使激光脉冲的尾部向前散射。前向散射导致激光脉冲在相互作用后发生蓝移。高能电子在等离子体波的横向场中产生贝塔电子振荡,并发射出坚硬的X射线和γ射线。我们表明,由于外部电子束和激光尾迹场的结合,可以建立一个非常明亮的GeV γ-量子源。GeV γ源可以特别用作生产正电子的高效装置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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