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Electron acceleration by an intense short-pulse laser in underdense plasma

机译:弱等离子体中强短脉冲激光的电子加速

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摘要

Electron acceleration from the interaction of an intense short-pulse laser with low density plasma is considered. The relation between direct electron acceleration within the laser pulse and that in the wake is investigated analytically. The magnitude and location of the ponderomotive-force-caused charge separation field with respect to that of the pulse determine the relative effectiveness of the two acceleration mechanisms. It is shown that there is an optimum condition for acceleration in the wake. Electron acceleration within the pulse dominates as the pulse becomes sufficiently short, and the latter directly drives and even traps the electrons. The latter can reach ultrahigh energies and can be extracted by impinging the pulse on a solid target. (C) 2003 American Institute of Physics. [References: 25]
机译:考虑到强短脉冲激光与低密度等离子体相互作用产生的电子加速。通过分析研究了激光脉冲内的直接电子加速度与尾波中的直接电子加速度之间的关系。质子动力引起的电荷分离场相对于脉冲的大小和位置决定了两种加速机制的相对有效性。结果表明,尾流加速存在最佳条件。随着脉冲变得足够短,脉冲内的电子加速度起主导作用,而脉冲直接驱动甚至俘获电子。后者可以达到超高能量,并且可以通过将脉冲撞击到固体靶上来提取。 (C)2003美国物理研究所。 [参考:25]

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