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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Laser diagnostics for the electron density of helium low temperature plasmas using saturated absorption spectroscopy
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Laser diagnostics for the electron density of helium low temperature plasmas using saturated absorption spectroscopy

机译:使用饱和吸收光谱,激光诊断氦低温等离子体的电子密度

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摘要

Helium (He) low temperature plasma with an electron density higher than 10(11) cm(-3) was produced using an inductively coupled plasma source, and the electron density of this plasma was determined using a high-resolution laser spectroscopic technique. To remove the Doppler broadening which is the most dominant line broadening in low temperature plasmas, a saturated absorption spectroscopy system was configured. The Lamb dip was successfully separated from the Doppler broadening for the 2(1)S-4(1)P transition of the He plasma using a high-resolution laser beam with a narrow spectral line width (below 1 MHz) at 396.5 nm. The estimated spectral line widths of natural broadening, van der Waals broadening, resonance broadening, and Stark broadening were 40.14 MHz, 0.93 MHz, 0.15 MHz, and 12.60 MHz, respectively, when the He gas pressure was 30 mTorr and 1 kW RF power was applied. The electron density of the He plasmas was determined to be similar to 3 x 10(11) cm(-3), which was comparable with those determined by a Langmuir probe and optical emission spectroscopy combined with a collisional-radiative model. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用电感耦合的等离子体源生产高于10(11 )cm(-3)的电子密度的低温等离子体,并且使用高分辨率激光光谱技术测定该等离子体的电子密度。为了消除作为低温等离子体中最大的线路展现的多普勒展领,配置了饱和吸收光谱系统。使用高分辨率激光束以396.5nm的窄谱线宽度(低于1MHz以下)的高分辨率激光束成功地与血浆的多普勒展宽的多普勒展宽分离出来分离。当他气压为30 mtorr和1kW的RF功率时,估计的自然扩大,共振扩展和显着扩展分别为40.14MHz,0.93MHz,0.15MHz,0.93MHz,0.15MHz,0.93MHz,0.15MHz,12.60MHz应用。测定HE等离子体的电子密度类似于3×10(11 )cm(-3),其与由Langmuir探针和光发射光谱法确定的那些与碰撞 - 辐射模型相当。 (c)2019年elestvier有限公司保留所有权利。

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