Song Yi-zhong, He An-zhi
School of Physics, Nanjing University of Science and Technology, Nanjing 210094, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2004 Jan;24(1):29-32.
Aluminum plasma was obtained with a Nd:YAG pulsed laser beam ablating target aluminum. The radiation information of the plasma was recorded on a time and space resolution basis. So the time-resolved spectra of Al plasma were obtained with a time delay of 10 to 10,000 ns. From those spectra, we acquired the time-resolved spectra of Al I 396.15 and Al I 394.40 nm, the characteristic lines of Al plasma radiation. The shape of the two characteristic lines was studied from 800 to 10,000 ns delay. Further more, the two characteristic lines were respectively fitted in Lorentz profile and Gauss profile with Lorentz and Gauss function. As a result, all the characteristic lines after 1000 ns delay well fitted Lorentz profile, and before that time, they also fitted each other, but slightly. In the whole range of time delay, the experimental lines departed by far from the fitted Gauss profile. So we could conclude that the shape of Al I 396.15 and that of Al I 394.40 nm were all Lorentz lines, not Gauss ones. The half-high-full widths of the two characteristic lines were determined, aided with the Lorentz lines fitting. Compared with the natural widths of the two lines, the experimental results were much wider than the theoretical values.
利用Nd:YAG脉冲激光束烧蚀铝靶获得铝等离子体。基于时间和空间分辨率记录等离子体的辐射信息。这样就获得了时间延迟为10到10000 ns的铝等离子体的时间分辨光谱。从这些光谱中,我们得到了Al I 396.15和Al I 394.40 nm的时间分辨光谱,它们是铝等离子体辐射的特征谱线。研究了延迟时间从800到10000 ns时这两条特征谱线的形状。此外,分别用洛伦兹函数和高斯函数对这两条特征谱线进行洛伦兹线型和高斯线型拟合。结果表明,延迟时间在1000 ns之后所有特征谱线都很好地符合洛伦兹线型,在此之前,它们也相互拟合,但拟合程度稍差。在整个延迟时间范围内,实验谱线与拟合的高斯线型相差甚远。所以我们可以得出结论,Al I 396.15和Al I 394.40 nm的谱线形状都是洛伦兹线型,而不是高斯线型。借助洛伦兹线型拟合确定了这两条特征谱线的半高全宽。与这两条谱线的自然宽度相比,实验结果比理论值宽得多。