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Time-resolved absolute measurements by electro-optic effect of giant electromagnetic pulses due to laser-plasma interaction in nanosecond regime

机译:在纳秒范围内由于激光-等离子体相互作用而产生的巨大电磁脉冲的电光效应导致的时间分辨绝对测量

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摘要

We describe the first electro-optical absolute measurements of electromagnetic pulses (EMPs) generated by laser-plasma interaction in nanosecond regime. Laser intensities are inertial-confinement-fusion (ICF) relevant and wavelength is 1054 nm. These are the first direct EMP amplitude measurements with the detector rather close and in direct view of the plasma. A maximum field of 261 kV/m was measured, two orders of magnitude higher than previous measurements by conductive probes on nanosecond regime lasers with much higher energy. The analysis of measurements and of particle-in-cell simulations indicates that signals match the emission of charged particles detected in the same experiment, and suggests that anisotropic particle emission from target, X-ray photoionization and charge implantation on surfaces directly exposed to plasma, could be important EMP contributions. Significant information achieved on EMP features and sources is crucial for future plants of laser-plasma acceleration and inertial-confinement-fusion and for the use as effective plasma diagnostics. It also opens to remarkable applications of laser-plasma interaction as intense source of RF-microwaves for studies on materials and devices, EMP-radiation-hardening and electromagnetic compatibility. The demonstrated extreme effectivity of electric-fields detection in laser-plasma context by electro-optic effect, leads to great potential for characterization of laser-plasma interaction and generated Terahertz radiation.
机译:我们描述了纳秒范围内由激光-等离子体相互作用产生的电磁脉冲(EMP)的第一个电光绝对测量。激光强度与惯性约束融合(ICF)有关,波长为1054 nm。这是首次直接进行EMP幅度测量,检测器距离等离子体较近且非常近。测得的最大电场为261 kV / m,比以前用导电探针在能量更高的纳秒级激光器上的测量高两个数量级。对测量结果和单元内模拟的分析表明,该信号与在同一实验中检测到的带电粒子的发射相匹配,并且表明从目标,X射线光电离和直接暴露于等离子体的表面上的电荷注入产生的各向异性粒子发射,可能是EMP的重要贡献。在EMP功能和来源方面获得的重要信息对于激光等离子体加速和惯性约束融合的未来工厂以及用作有效的等离子体诊断至关重要。它还开放了激光与等离子体相互作用的显着应用,作为用于材料和设备,EMP辐射硬化和电磁兼容性研究的强大射频微波源。通过电光效应证明的在激光等离子体环境中检测电场的极端有效性,为表征激光等离子体相互作用和产生的太赫兹辐射带来了巨大潜力。

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