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Effects of Transverse Magnetic Field on Laser-produced Carbon Plasma Plume in Nitrogen Atmosphere

机译:横向磁场对氮气氛下激光产生的碳等离子体羽的影响

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By adopting a time-resolved optical emission spectrometry, we have investigated the effects of transverse magnetic field on C2 and CN molecules produced by laser ablation of a graphite target in nitrogen atmosphere. We found that the spectroscopic temperatures of both species, obtained via simulation of the optical emission spectra, as well as their emission intensities from the electronically excited states increased significantly in the presence of a magnetic field. The cyclotron radii and frequencies for electrons and ions were estimated to explain the increase in the number of collisions in the laser-produced carbon plasma plume under a magnetic field.
机译:通过采用时间分辨光发射光谱法,我们研究了横向磁场对在氮气氛中通过激光烧蚀石墨靶产生的C2和CN分子的影响。我们发现,通过模拟光发射光谱获得的两种物质的光谱温度,以及它们在电场的作用下从电子激发态的发射强度均显着增加。估计了回旋加速器的半径以及电子和离子的频率,以解释在磁场下激光产生的碳等离子体羽流中碰撞次数的增加。

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