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Modeling target bulk heating resulting from ultra-intense short pulse laser irradiation of solid density targets

机译:模拟固体密度靶材的超强短脉冲激光辐照产生的靶材整体加热

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摘要

Isochoric heating of solid-density matter up to a few tens of eV is of interest for investigating astrophysical or inertial fusion scenarios. Such ultra-fast heating can be achieved via the energy deposition of short-pulse laser generated electrons. Here, we report on experimental measurements of this process by means of time- and space-resolved optical interferometry. Our results are found in reasonable agreement with a simple numerical model of fast electron-induced heating.
机译:固态密度物质的等时加热至数十eV的情况对于研究天体物理或惯性聚变场景很有意义。这种超快加热可以通过短脉冲激光产生的电子的能量沉积来实现。在这里,我们通过时间和空间分辨光学干涉仪报告了该过程的实验测量结果。我们的结果与快速电子感应加热的简单数值模型合理吻合。

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