论文标题
在短脉冲激光相互作用期间,目标持有人的电磁脉冲发射
Electromagnetic pulse emission from target holders during short-pulse laser interactions
论文作者
论文摘要
电磁脉冲(EMP)发射的全局模型首次将激光目标的电荷分离连接到电磁场的定量测量。我们提出了一个频域偶极天线模型,该模型预测激光靶中积累的电荷数量以及EMP振幅和频率。该模型已通过几个高强度激光设施的测量值进行了验证,从而提供了有关目标物理学的见解,并为下一代超然激光设施的设计提供了信息。 EMP振幅与目标上积累的总电荷成正比,但我们证明,如果电荷时间比天线特性时间短,则不会直接受到目标充电时间(因此激光脉冲持续时间)的影响。我们提出了两种独立的方法,用于根据激光脉冲持续时间估算充电时间。我们还使用圆柱,圆锥形和螺旋架研究了目标持有人几何形状对EMP的影响。
For the first time, a global model of electromagnetic pulse (EMP) emission connects charge separation in the laser target to quantitative measurements of the electromagnetic field. We present a frequency-domain dipole antenna model which predicts the quantity of charge accumulated in a laser target as well as the EMP amplitude and frequency. The model is validated against measurements from several high-intensity laser facilities, providing insight into target physics and informing the design of next-generation ultra-intense laser facilities. EMP amplitude is proportional to the total charge accumulated on the target, but we demonstrate that it is not directly affected by target charging time (and therefore the laser pulse duration) provided the charging time is shorter than the antenna characteristic time. We propose two independent methods for estimating the charging time based on the laser pulse duration. We also investigate the impact of target holder geometry on EMPs using cylindrical, conical and helical holders.