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Measurement of electromagnetic pulses generated during interactions of high power lasers with solid targets

机译:测量高功率激光器与固体靶相互作用期间产生的电磁脉冲

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摘要

A target irradiated with a high power laser pulse, blows off a large amount of charge and as a consequence the target itself becomes a generator of electromagnetic pulses (EMP) owing to high return current flowing to the ground through the target holder. The first measurement of the magnetic field induced by the neutralizing current reaching a value of a few kA was performed with the use of an inductive target probe at the PALS Laser Facility (Cikhardt et al. Rev. Sci. Instrum. 85 (2014) 103507). A full description of EMP generation should contain information on the spatial distribution and temporal variation of the electromagnetic field inside and outside of the interaction chamber. For this reason, we consider the interaction chamber as a resonant cavity in which different modes of EMP oscillate for hundreds of nanoseconds, until the EMP is transmitted outside through the glass windows and EM waves are attenuated. Since the experimental determination of the electromagnetic field distribution is limited by the number of employed antennas, a mapping of the electromagnetic field has to be integrated with numerical simulations. Thus, this work reports on a detailed numerical mapping of the electromagnetic field inside the interaction chamber at the PALS Laser Facility (covering a frequency spectrum from 100 MHz to 3 GHz) using the commercial code COMSOL Multiphysics 5.2. Moreover we carried out a comparison of the EMP generated in the parallelepiped-like interaction chamber used in the Vulcan Petawatt Laser Facility at the Rutherford Appleton Laboratory, against that produced in the spherical interaction chamber of PALS.
机译:用高功率激光脉冲辐照的目标物会散发出大量电荷,因此,由于高的返回电流通过目标物支架流向地面,因此目标物本身成为电磁脉冲(EMP)的生成器。在PALS激光设备上使用感应目标探针对由中和电流感应的达到几kA值的磁场进行的首次测量(Cikhardt等人.Rev.Sci.Instrum.85(2014)103507 )。 EMP产生的完整描述应包含有关相互作用室内外电磁场的空间分布和时间变化的信息。因此,我们将交互室视为一个谐振腔,在该谐振腔中,不同模式的EMP会振荡数百纳秒,直到EMP通过玻璃窗向外传播并衰减EM波为止。由于电磁场分布的实验确定受到所用天线数量的限制,因此必须将电磁场的映射与数值模拟结合起来。因此,这项工作报告了使用商业代码COMSOL Multiphysics 5.2在PALS激光设施处的交互室内部的电磁场的详细数值映射(涵盖了从100 MHz到3 GHz的频谱)。此外,我们对卢瑟福·阿普尔顿实验室在Vulcan Petawatt激光设备中使用的平行六面体状交互室中生成的EMP与PALS球形交互室中生成的EMP进行了比较。

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