首页> 外文会议>The 41st IEEE International Conference on Plasma Science, and the 20th International Conference on High-Power Particle Beams >Investigation of high-intensity laser-plasma interaction in multi-picosecond laser pulse length regime
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Investigation of high-intensity laser-plasma interaction in multi-picosecond laser pulse length regime

机译:多皮秒激光脉冲长度状态下高强度激光-等离子体相互作用的研究

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Intense (I>1018 W/cm) laser-plasma interaction offers a very efficient source of fast electrons at relativistic energies, which can be used for fast-ignition inertial confinement fusion, ultra-short x-ray sources and heating matter to warm dense states. We report theoretical and particle-in-cell simulation results for characterization of fast electron source produced from intense laser interaction with solid targets at the time scale of multi-picosecond and energy scale of kilojoule. A substantial increase in both fast electron average energy and laser-electron conversion efficiency has been observed when the laser pulse length was extended from 1 to 10 picoseconds. The enhanced electron acceleration is attributed to a significant thermal preplasma expansion on several picosecond time scale that forms a long flat “shelf” at near-critical (0.1n~n) density region, and ponderomotive piling-up of electrons that leads to a sharp interface at relativistic critical density γn. Both of these eventually result in large amplitude increase and volume broadening of the electrostatic potential for electron acceleration.
机译:强烈的(I> 1018 W / cm)激光-等离子体相互作用提供了一种非常有效的相对论能量快速电子源,可用于快速点火惯性约束聚变,超短X射线源和加热物质以致密状态。我们报告理论和单元格内的模拟结果,用于表征快速电子源的特征,该快速电子源是在几微微秒的时间尺度和千焦耳的能量尺度下与固体靶进行强烈激光相互作用而产生的。当激光脉冲长度从1皮秒扩展到10皮秒时,可以观察到快速电子平均能量和激光电子转换效率的大幅提高。电子加速度的提高归因于在几皮秒时间尺度上显着的热等离子体膨胀,在接近临界(0.1n〜n)的密度区域形成了一个长的扁平“架”,并且电子的积聚作用导致了电子的急剧堆积。相对论临界密度γn处的界面。最终,这两者都导致电子加速的静电势的大幅度增加和体积变宽。

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