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All optical dual stage laser wakefield acceleration driven by two-color laser pulses

机译:由双色激光脉冲驱动的全光学双级激光尾波加速

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摘要

We propose an all-optical dual-stage laser wakefield acceleration (LWFA), staged with co-propagating two-color laser pulses in a plasma medium, to enhance the electron bunch energy. After the depletion of the leading fundamental laser pulse that initiates self-injection and sets up the first stage particle acceleration, the subsequent second-harmonic laser pulse takes over the acceleration process and accelerates the electron bunch in the second stage over a significantly longer distance than in the first stage. In this all optical dual-stage LWFA, the electrons can gain 3 times higher energy as compared to the energy gain from the single stage LWFA driven by a single-color laser pulse with equivalent energy. Our multi-dimensional particle-in-cell simulations demonstrate that a 10-GeV electron bunch with 20-pC charge can be obtained by the two-color dual-stage LWFA using total input laser power of 0.6 PW.
机译:我们提出了一种全光学双阶段激光尾波加速器(LWFA),与在等离子介质中共同传播的两种颜色的激光脉冲一起进行,以增强电子束能量。在先导的基本激光脉冲耗尽之后,该脉冲会启动自注入并建立了第一阶段的粒子加速,随后的第二谐波激光脉冲接管了加速过程,并在第二阶段加速了电子束,其距离比在第一阶段。在这种全光学双级LWFA中,与同等能量的单色激光脉冲驱动的单级LWFA所获得的能量相比,电子可获得的能量高3倍。我们的多维粒子模拟表明,通过使用两色双级LWFA,使用0.6 PW的总输入激光功率,可以获得具有20 pC电荷的10 GeV电子束。

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