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Characterization of local thermodynamic equilibrium in a laser-induced aluminum alloy plasma

机译:激光诱导铝合金等离子体中局部热力学平衡的表征

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摘要

The electron temperature was evaluated using the line-to-continuum ratio method, and whether the plasma was close to the local thermodynamic equilibrium (LTE) state was investigated in detail. The results showed that approximately 5 mu s after the plasma formed, the changes in the electron and excitation temperatures, which were determined using a Boltzmann plot, overlapped in the 15% error range, which indicated that the LTE state was reached. The recombination of electrons and ions and the free electron expansion process led to the deviation from the LTE state. The plasma's expansion rate slowed over time, and when the expansion time was close to the ionization equilibrium time, the LTE state was almost reached. The McWhirter criterion was adopted to calculate the threshold electron density for different species, and the results showed that experimental electron density was greater than the threshold electron density, which meant that the LTE state may have existed. However, for the nonmetal element N, the threshold electron density was greater than the value experimental value approximately 0.8 mu s after the plasma formed, which meant that LTE state did not exist for N. (C) 2016 Optical Society of America
机译:使用线与谱线比法评估电子温度,并详细研究等离子体是否接近局部热力学平衡(LTE)状态。结果显示,在等离子体形成后约5 s内,使用玻耳兹曼图确定的电子和激发温度的变化在15%的误差范围内重叠,这表明已达到LTE状态。电子和离子的复合以及自由电子的膨胀过程导致偏离LTE状态。等离子体的膨胀率随时间而减慢,并且当膨胀时间接近电离平衡时间时,几乎达到了LTE状态。采用McWhirter准则计算不同物种的阈值电子密度,结果表明实验电子密度大于阈值电子密度,这意味着可能存在LTE状态。但是,对于非金属元素N,在等离子体形成后约0.8微秒,阈值电子密度大于实验值,这意味着N并不存在LTE状态。(C)2016美国光学学会

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