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首页> 外文期刊>Fusion Engineering and Design >High-directional laser-plasma-induced X-ray source assisted by collimated electron beams in targets with a self-generated magnetic field
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High-directional laser-plasma-induced X-ray source assisted by collimated electron beams in targets with a self-generated magnetic field

机译:高定向激光等离子体诱导的X射线源,在具有自生磁场的目标中通过准直电子束辅助

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摘要

Advances in ultra-intense laser pulse and plasma diagnostic technologies have fostered tremendous progress in the high-performance X-ray photon source. In this paper, we proposed a novel cone-attached sandwich target with a sharp density gradient, which can guide and reflect much laser pulse to the target, to get a high-directional and micro-sized laser-plasma-induced X-ray source with a smaller divergence angle and higher brilliance. 2D PIC simulations were performed to investigate the laser-plasma-induced X-ray photon emissions in the proposed target at a laser intensity of 2.5 x 10(20)W/cm(2). Results indicated that most of the high-directional photons were radiated by the forward-moving fast electrons. Although the accelerated electrons will experience slightly transverse oscillations due to the electric field of the laser pulse, they will be guided and confined by the self-generated magnetic field (311 MG) along the interface of the proposed target, and then the divergence angle of the fast electrons can be deceased as well. These underlying mechanisms enhance the X-ray photon emissions in the proposed target, which show a promising application in high energy density physics and inertial confinement fusion field.
机译:超高强度激光脉冲和等离子体诊断技术的进步促进了高性能X射线光子源的巨大进步。在本文中,我们提出了一种新型的具有尖锐的密度梯度的圆锥形夹层三明治靶,该靶可以将大量激光脉冲引导并反射到靶上,从而获得高方向性和微尺寸的激光等离子体诱导的X射线源具有较小的发散角和较高的亮度。进行了2D PIC模拟,以研究在2.5 x 10(20)W / cm(2)的激光强度下,激光等离子体诱导的拟议目标中的X射线光子发射。结果表明,大多数高方向性光子被向前移动的快电子辐射。尽管由于激光脉冲电场的作用,加速的电子会产生轻微的横向振荡,但它们会被自生磁场(311 MG)沿拟议靶的界面,然后的发散角进行引导和限制。快电子也可以死。这些潜在机制增强了拟议目标中的X射线光子发射,这表明在高能量密度物理学和惯性约束聚变领域中具有广阔的应用前景。

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