激光击穿目标材料产生的射频辐射

L. Kumar, E. Manikanta, C. Leela, P. P. Kiran
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引用次数: 1

摘要

介绍了纳秒激光击穿大气和金属(铝、铜)目标发射的射频波的探测和分析。观察到不同目标材料的发射具有光谱选择性,特定依赖于激光和天线极化。从大气空气的激光产生等离子体(LPP)中,发现射频输出随着输入激光能量的增加而增加,直到一定值,超过该值,在本研究使用的频率范围内几乎没有观测到发射。这种效应是由于在较高的激光输入能量下,LPP中的多个等离子体源导致了净诱导偶极矩的改变。在所研究的金属中,铜的射频发射相对高于铝,因为铜的等离子体导电性更好。进一步的研究可能会导致一种有效的技术,从射频信号峰识别对峙材料。
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RF emissions from laser breakdown of target materials
The detection and analysis of the radio frequency (RF) waves emitted by the nanosecond laser breakdown of atmospheric air and metal (aluminum and copper) targets is presented. The emissions from different target materials were observed to be spectral selective with specific dependence on laser and antenna polarization. From the laser produced plasma (LPP) of atmospheric air, the RF output was found to be increasing with the input laser energy up to certain value, beyond which almost no emission was observed over the frequency range used in this study. This effect is attributed to the modification in the net induced dipole moment due to the multiple plasma sources in the LPP at higher input laser energies. Between the metals studied, RF emissions from copper were relatively higher than that of aluminum because of the better plasma conductivity of copper. Further studies may lead to an efficient technique for standoff material identification from the RF signature peaks.
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