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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Laser plasma diagnostics and self-absorption measurements of the H-beta Balmer series line
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Laser plasma diagnostics and self-absorption measurements of the H-beta Balmer series line

机译:H-beta Balmer系列产品线的激光等离子体诊断和自吸收测量

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In this work, the peak-separation of the Balmer series hydrogen beta line was measured to determine the electron density of laser-induced plasma from spatially and temporally resolved spectra collected in laboratory air at standard ambient temperature and pressure. The self-absorption phenomenon is investigated by using a mirror that retro-reflects the emitted radiation through the plasma. The experimental data with and without the mirror were analyzed with available hydrogen beta computer simulations. Hardly any self-absorption was found as indicated by the correction factors that only marginally differ from unity. The obtained electron density values are also compared with the electron densities from nearby nitrogen lines. The hydrogen beta H-beta peak-separation method yields reliable results for an electron density of the order of 1 x 10(17) cm(-3) for time delays of 5 mu s from plasma generation, which confirms that self-absorption is insignificant for such electron densities. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中,对Balmer系列氢β谱线的峰分离进行了测定,以便从实验室空气中在标准环境温度和压力下收集的时空分辨光谱确定激光诱导等离子体的电子密度。通过使用一面反射镜,该反射镜通过等离子体将发射的辐射后向反射,从而研究自吸收现象。使用和不使用反射镜的实验数据通过可用的氢贝塔计算机模拟进行分析。修正系数表明,几乎没有发现任何自吸收现象,而修正系数仅与单位差异很小。还将获得的电子密度值与附近氮线的电子密度进行比较。氢βH-β峰分离方法对于1 x 10(17)cm(-3)量级的电子密度产生了可靠的结果,距等离子体产生5 s s的时间延迟,证实了自吸收是对于这样的电子密度微不足道。 (C)2015 Elsevier Ltd.保留所有权利。

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