Lawrence Livermore National Laboratory, Livermore, California 94550, USA.
Phys Rev Lett. 2012 Mar 16;108(11):115004. doi: 10.1103/PhysRevLett.108.115004.
The effect of increasing prepulse energy levels on the energy spectrum and coupling into forward-going electrons is evaluated in a cone-guided fast-ignition relevant geometry using cone-wire targets irradiated with a high intensity (10(20) W/cm(2)) laser pulse. Hot electron temperature and flux are inferred from Kα images and yields using hybrid particle-in-cell simulations. A two-temperature distribution of hot electrons was required to fit the full profile, with the ratio of energy in a higher energy (MeV) component increasing with a larger prepulse. As prepulse energies were increased from 8 mJ to 1 J, overall coupling from laser to all hot electrons entering the wire was found to fall from 8.4% to 2.5% while coupling into only the 1-3 MeV electrons dropped from 0.57% to 0.03%.
在圆锥引导的与快点火相关的几何结构中,使用高强度(10(20) W/cm(2))激光脉冲辐照圆锥丝靶,评估了增加预脉冲能量水平对能谱和正向电子耦合的影响。利用混合粒子模拟方法,从 Kα 图像和产额推断出热电子温度和通量。需要采用双温分布的热电子来拟合整个轮廓,其中具有更高能量(MeV)的电子成分的能量比值随着更大的预脉冲而增加。当预脉冲能量从 8 mJ 增加到 1 J 时,发现所有进入丝的热电子的激光总耦合从 8.4%下降到 2.5%,而仅耦合到 1-3 MeV 的电子则从 0.57%下降到 0.03%。