Zhang Guobo, Chen Min, Yang Xiaohu, Liu Feng, Weng Suming, Ma Yanyun, Zou Debin, Yu Tongpu, Shao Fuqiu, Sheng Zhengming
Opt Express. 2020 Sep 28;28(20):29927-29936. doi: 10.1364/OE.404723.
Tunable X-ray sources from a laser-driven wakefield have wide applications. However, due to the difficulty of electron dynamics control, currently the tunability of laser wakefield-based X-ray sources is still difficult. By using three-dimensional particle-in-cell simulations, we propose a scheme to realize controllable electron dynamics and X-ray radiation. In the scheme, a long wavelength drive pulse excites a plasma wake and an off-axis laser pulse with a short wavelength co-propagates with the drive pulse and ionizes the K-shell electrons of the background high-Z gas. The electrons can be injected in the wakefield with controllable transverse positions and residual momenta. These injected electrons experience controllable oscillations in the wake, leading to tunable radiations both in intensity and polarization.
激光驱动尾波场产生的可调谐X射线源具有广泛的应用。然而,由于电子动力学控制的困难,目前基于激光尾波场的X射线源的可调谐性仍然很差。通过三维粒子模拟,我们提出了一种实现可控电子动力学和X射线辐射的方案。在该方案中,长波长驱动脉冲激发等离子体尾波,短波长离轴激光脉冲与驱动脉冲共传播并电离背景高Z气体的K壳层电子。电子可以在尾波场中以可控的横向位置和剩余动量注入。这些注入的电子在尾波中经历可控的振荡,从而导致强度和偏振均可调的辐射。