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High flux femtosecond x-ray emission from the electron-hose instability in laser wakefield accelerators

机译:激光尾波加速器中电子软管的不稳定性导致高通量飞秒X射线发射

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Bright and ultrashort duration x-ray pulses can be produced by through betatron oscillations of electrons during laser wakefield acceleration (LWFA). Our experimental measurements using the Hercules laser system demonstrate a dramatic increase in x-ray flux for interaction distances beyond the depletion/dephasing lengths, where the initial electron bunch injected into the first wake bucket catches up with the laser pulse front and the laser pulse depletes. A transition from an LWFA regime to a beam-driven plasma wakefield acceleration regime consequently occurs. The drive electron bunch is susceptible to the electron-hose instability and rapidly develops large amplitude oscillations in its tail, which leads to greatly enhanced x-ray radiation emission. We measure the x-ray flux as a function of acceleration length using a variable length gas cell. 3D particle-in-cell simulations using a Monte Carlo synchrotron x-ray emission algorithm elucidate the time-dependent variations in the radiation emission processes.
机译:可以通过在激光尾波加速(LWFA)期间通过电子的电子加速器振荡来产生明亮和超短持续时间的X射线脉冲。我们使用Hercules激光系统进行的实验测量结果表明,相互作用距离超过耗尽/移相长度后,X射线通量显着增加,其中注入第一个尾波桶的初始电子束追赶激光脉冲前沿,并且激光脉冲耗尽。因此,发生了从LWFA态到光束驱动的等离子体尾场加速态的转变。驱动电子束易受电子软管不稳定的影响,并在其尾部迅速产生大幅度的振荡,从而大大增强了X射线辐射的发射。我们使用可变长度的气室测量X射线通量作为加速度长度的函数。使用Monte Carlo同步加速器X射线发射算法的3D单元粒子模拟可阐明辐射发射过程中随时间变化的情况。

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