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Atmospheric electromagnetic pulse propagation effects from thick targets in a terawatt laser target chamber

机译:太瓦激光靶室内厚靶的大气电磁脉冲传播效应

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摘要

Generation and effects of atmospherically propagated electromagnetic pulses (EMPs) initiated by photo-electrons ejected by the high density and temperature target surface plasmas from multiterawatt laser pulses are analyzed. These laser radiation pulse interactions can significantly increase noise levels, thereby obscuring data (sometimes totally) and may even damage sensitive probe and detection instrumentation. Noise effects from high energy density (approximately multiterawatt) laser pulses (~300-400 ps pulse widths) interacting with thick (~1 mm) metallic and dielectric solid targets and dielectric—metallic powder mixtures are interpreted as transient resonance radiation associated with surface charge fluctuations on the target chamber that functions as a radiating antenna. Effective solutions that minimize atmospheric EMP effects on internal and proximate electronic and electro-optical equipment external to the system based on systematic measurements using Moebius loop antennas, interpretations of signal periodicities, and dissipation indicators determining transient noise origin characteristics from target emissions are described. Analytic models for the effect of target chamber resonances and associated noise current and temperature in a probe diode laser are described.
机译:分析了由多兆瓦激光脉冲产生的高密度和温度目标表面等离子体发射的光电子引发的大气传播电磁脉冲(EMP)的产生和影响。这些激光辐射脉冲的相互作用会显着增加噪声水平,从而使数据(有时是完全)模糊不清,甚至可能损坏敏感的探头和检测仪器。高能量密度(约数兆瓦)激光脉冲(约300-400 ps脉冲宽度)与厚(约1毫米)的金属和介电固体靶以及介电金属粉末混合物相互作用产生的噪声效应被解释为与表面电荷相关的瞬态共振辐射用作辐射天线的目标腔室的波动。描述了有效的解决方案,这些解决方案基于使用Moebius环形天线进行的系统测量,信号周期的解释以及确定目标发射的瞬态噪声源特性的耗散指标,来最大程度地减少大气EMP对系统内部和内部电子电气设备的影响。描述了在探测二极管激光器中目标腔室共振以及相关噪声电流和温度的影响的分析模型。

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