首页> 外文期刊>The Open Spectroscopy Journal >A Computational/Spectroscopic Study of a Newly Derived General Unified Theory of Spectral Line Shapes to Measure HWHM's for an Ar-perturber/K-radiator system, Using Two 7s←4p Transitions, as Applied to the Line Core
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A Computational/Spectroscopic Study of a Newly Derived General Unified Theory of Spectral Line Shapes to Measure HWHM's for an Ar-perturber/K-radiator system, Using Two 7s←4p Transitions, as Applied to the Line Core

机译:用于谱线形状的新通用通用理论的计算/光谱研究,使用两个7s←4p跃迁来测量Ar-扰动器/ K辐射器系统的HWHM,应用于线芯

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In a recent publication, a new unified theory of spectral line shapes was derived, which allowed for the variation of the electric dipole moment with perturber positions. The present author put the g(s) term derived from the theory into a computable form, and constructed spectral line shapes from which line-core HWHM's (w′s) were measured. These w's were compared with experimental Fabry-Perot-interferometric results. Typically, for 2ΔV and T=1000 K, the percent difference between exptl.w and compt.w is ≈ 22%. log(w)?vs?log(P) and curve is computed and compared with those from non-impact-approximation-theory computations. Two temperatures were studied at T=400 and 1000 K in the Ar-perturber/K-radiator system; and two pseudo-potential differences were used: 1ΔV= 221/23/2,3/27sS?,4pP and 2ΔV= 3/2,1/221/27s2S?4pP. They were used to evaluate their comparative effects on w. E.g., 1ΔV with a deep well exhibited a larger w than that of 2ΔV with a shallow well.
机译:在最近的出版物中,推导了一种新的统一的谱线形状理论,该理论允许电偶极矩随扰动位置而变化。本作者将源自该理论的g(s)项转换为可计算形式,并构建了光谱线形,从中测量了线芯HWHM(w's)。将这些w与法布里-珀罗干涉实验结果进行比较。通常,对于2ΔV和T = 1000 K,expt.w和compt.w之间的百分比差为≈22%。计算log(w)?vs?log(P)并与非冲击近似理论计算的曲线进行比较。在Ar-perturber / K辐射器系统中研究了两个温度,分别为T = 400和1000K。使用两个伪电位差:1ΔV= 221/23 / 2,3 /27sSα,4pP和2ΔV= 3 / 2,1 / 221 /27s2Sα4pP。他们被用来评估其对w的比较效果。例如,深井的1ΔV的功率比浅井的2ΔV的功率大。

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