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Ultra short X-ray source based on the nonlinear Thomson scattering of femtosecond lasers from plasma-accelerated electron beams

机译:基于飞秒激光从等离子体加速电子束的非线性汤姆逊散射的超短X射线源

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In this paper, we propose an experimental scheme for a compact X-ray source which can produce X-ray pulses with 10 femtosecond duration. This novel X-ray source is based on the nonlinear Thomson backscattering of terawatt ultrashort infra-red laser from MeV plasma accelerated electrons, which are now routinely generated from the laser-wakefield accelerators. The synchronization between the TW laser and e-beam can simply be achieved via a jitter-less optical delay. At KERI, a 2 TW 700 fs laser system has been installed and the experiment on e-beam generation is ongoing. Here we show some simulation results for the typical ultrashort e-beam generation from the LWFA and the basic calculations for the X-ray generation.
机译:在本文中,我们提出了一种紧凑型X射线源的实验方案,该方案可以产生10飞秒持续时间的X射线脉冲。这种新颖的X射线源基于兆伏特等离子加速电子对兆瓦级超短红外激光的非线性Thomson背向散射,现在,这些电子通常是由激光尾场加速器产生的。 TW激光和电子束之间的同步可以简单地通过无抖动的光学延迟来实现。在KERI,已经安装了2 TW 700 fs激光系统,正在进行电子束生成实验。在这里,我们显示了一些来自LWFA的典型超短电子束生成的仿真结果以及X射线生成的基本计算。

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