首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Effect of a transverse magnetic field on the plume emission in laser-produced plasma: An atomic analysis
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Effect of a transverse magnetic field on the plume emission in laser-produced plasma: An atomic analysis

机译:横向磁场对激光产生等离子体中羽流发射的影响:原子分析

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We have investigated the effect of varying transverse magnetic field on the plasma plume emission of laser-produced lithium plasma. Two atomic transitions for lithium neutral Li (I) and two for Li ion LI (II) are taken for the study. It has been found that for Li (I), the emission from 670.8 nm transition (2s~2S_(1/2)←2p~2P_(3/2'1/2)) shows initial enhancement and then subsequent decrease for higher fields. Of course, the overall intensity is increased for all the fields when compared to the case of without field. On the other hand, for 610.3 nm (2p~2P_(1/2)←3d~2P_(3/2'5/2)), there is continuous decrease in intensity. Interestingly, for Li (II) transitions also, after an initial increase in intensity up to 0.08Ta decrease is observed. From the atomic analysis, we find that for 670.8 nm line, the cause of initial enhancement is increase in electron impact excitation whereas for decreased intensity, increased field-induced ionization appears to be responsible mechanism. However, for 610.3 nm line, decrease in intensity appears to be due to decreased recombination. For Li (II), 478.8 nm (3p~1P1←4d~1D2) and 548.4 nm (2s~3S1←2p~3P_(2,1,0)) transitions, initial increase appears to be due to increased confinement (increase in plasma density) and subsequent decrease in intensity with increase in field due to decreased recombination.
机译:我们已经研究了改变横向磁场对激光产生的锂等离子体的等离子体羽流发射的影响。锂中性锂(I)的两个原子跃迁和锂离子锂(II)的两个原子跃迁用于研究。已发现对于Li(I),670.8 nm跃迁(2s〜2S_(1/2)←2p〜2P_(3 / 2'1 / 2))的发射显示出最初的增强,随后对于更高的场减小。当然,与没有场的情况相比,所有场的总强度都增加了。另一方面,对于610.3nm(2p〜2P_(1/2)←3d〜2P_(3 / 2'5 / 2)),强度连续降低。有趣的是,对于Li(II)跃迁,在强度初始增加后最多可观察到0.08Ta的减少。从原子分析中,我们发现对于670.8 nm谱线,初始增强的原因是电子撞击激发的增加,而对于强度降低,场诱导的电离的增加似乎是主要原因。然而,对于610.3nm的谱线,强度降低似乎是由于重组降低。对于Li(II),478.8 nm(3p〜1P1←4d〜1D2)和548.4 nm(2s〜3S1←2p〜3P_(2,1,0))跃迁,最初的增加似乎是由于限制度的增加(增加等离子体密度),以及由于重组减少导致的场强增加导致强度降低。

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