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首页> 外文期刊>Physics of plasmas >Influence of lateral target size on hot electron production and electromagnetic pulse emission from laser-irradiated metallic targets
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Influence of lateral target size on hot electron production and electromagnetic pulse emission from laser-irradiated metallic targets

机译:横向靶材尺寸对激光辐照金属靶材产生热电子和电磁脉冲发射的影响

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摘要

The influences of lateral target size on hot electron production and electromagnetic pulse emission from laser interaction with metallic targets have been investigated. Particle-in-cell simulations at high laser intensities show that the yield of hot electrons tends to increase with lateral target size, because the larger surface area reduces the electrostatic field on the target, owing to its expansion along the target surface. At lower laser intensities and longer time scales, experimental data characterizing electromagnetic pulse emission as a function of lateral target size also show target-size effects. Charge separation and a larger target tending to have a lower target potential have both been observed. The increase in radiation strength and downshift in radiation frequency with increasing lateral target size can be interpreted using a simple model of the electrical capacity of the target.
机译:研究了横向靶尺寸对热电子产生和激光与金属靶相互作用的电磁脉冲发射的影响。在高激光强度下的粒子模拟表明,热电子的产量会随着横向靶材尺寸的增加而增加,这是因为较大的表面积会减小其在靶材上的静电场,这是由于其沿靶材表面的扩展。在较低的激光强度和较长的时间尺度下,表征电磁脉冲发射与横向目标尺寸的函数关系的实验数据也显示出目标尺寸的影响。都已经观察到电荷分离和倾向于具有较低目标电位的较大目标。辐射强度的增加和辐射频率的下降随横向目标尺寸的增加而变化,可以使用目标电容的简单模型来解释。

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