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Energy content of target and electron flow in femtosecond laser target interactions

机译:飞秒激光靶相互作用中靶和电子流的能量含量

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摘要

The heating of the titanium foil in a recent femtosecond laser plasma experiment is investigated theoretically in two different ways. In the first, the energy content and thus the heating efficiency of the central volume of the foil is derived by integrating the transverse temperature profiles obtained in this experiment, using specific heats based on the average atom model. In the second approach target heating by the fast electrons, both by direct energy deposition and by resistive heating is investigated. The latter approach makes use of a specially devised electron flow model which includes a simplified quantitative treatment of multi-refluxing as a crucial component. In all, the calculated results of electron beam heating are consistent with experiment within the limitations of the modeling. Finally, a prediction for the temporal dependence of the K pulse from the central volume of the foil based on our electron flow model is given.
机译:理论上以两种不同方式研究了飞秒激光等离子体实验中钛箔的加热。首先,通过结合在该实验中获得的横向温度曲线,使用基于平均原子模型的比热,对箔的中心体积的能量含量以及加热效率进行推导。在第二种方法中,研究了由快速电子进行的目标加热,既通过直接能量沉积又通过电阻加热。后一种方法利用专门设计的电子流模型,该模型包括简化的多回流定量处理,将其作为关键组件。总之,在模型范围内,电子束加热的计算结果与实验结果吻合。最后,根据我们的电子流动模型,从箔的中心体积预测了K脉冲的时间依赖性。

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