Hot electron scaling for two-plasmon decay in ICF plasmas

PHYSICS OF PLASMAS(2023)

引用 1|浏览11
暂无评分
摘要
We present a parametric scaling of hot electron (HE) generation at quarter critical density from the two-plasmon decay process. The study is conducted with the laser plasma simulation environment code, considering Langmuir decay instabilities (LDI) and laser pump depletion in 2D. The parameter scan is conducted as a function of electron temperature, ion-electron temperature ratio, drive strength, and density scale length. The scaling shows an hot electron (HE) conversion fraction up to 40%, HE fluxes up to 6 similar to 1014 W=cm2, and average temperatures in the range of 30 to 100 keV. The electron angular distributions exhibit two main regions: the plasma "bulk," characterized by homogeneous emission, up to energies of 30 similar to 60 keV depending on the individual laser-plasma conditions, and a HE tail after ' 50 similar to 60 keV. The midenergy electrons are homogeneously emitted toward the end of the plasma bulk and acquire energy through electron plasma wave (EPW) Landau damping from Langmuir wave collapse and LDI cascade. The HE tail has electrons emitted in the forward direction and at low divergence, due to turbulence and EPW Landau damping from multi-staged acceleration. Finally, the laser power transmitted through the quarter critical region reaches values from similar to 80% down to similar to 35% for increasing HE generation, with absorption due to EPW collisional damping in the range of similar to 10% similar to 35%.
更多
查看译文
关键词
hot electron,icf,two-plasmon
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要