首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Absorption spectroscopy measurements of resonant and metastable atom densities in atmospheric-pressure discharges using a low-pressure lamp as a spectral-line source and comparison with a collisional-radiative model
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Absorption spectroscopy measurements of resonant and metastable atom densities in atmospheric-pressure discharges using a low-pressure lamp as a spectral-line source and comparison with a collisional-radiative model

机译:使用低压灯作为谱线源并利用碰撞辐射模型进行比较的大气压放电中共振和亚稳态原子密度的吸收光谱测量

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摘要

The well-known absorption method for measuring metastable and resonant atom densities in reduced-pressure discharges using a low-pressure lamp as a spectral-line source is extended to plasmas sustained at atmospheric pressure where the line profiles are of the Voigt type rather than Gaussian. This technique is further applied to determine the axial distribution of metastable and resonant atom densities in a tubular argon surface-wave (microwave) discharge. At atmospheric pressure, the discharge is radially contracted and determination of the absorption length through lateral probing of the tube becomes a critical issue. Good agreement of the metastable and resonant atom densities calculated from a collisional-radiative model with the measured values supports the validity of the method developed. The model underlines the influence of the molecular ion kinetics on the Ar 1 4s level population and reveals an efficient 3-step ionization process involving the 4s and 4p levels for atomic ion formation.
机译:使用低压灯作为谱线源来测量减压放电中亚稳态和共振原子密度的著名吸收方法已扩展到在大气压力下维持的等离子体,在该等离子体中,线轮廓为Voigt型而不是高斯型。这项技术进一步应用于确定管状氩表面波(微波)放电中亚稳态和共振原子密度的轴向分布。在大气压下,放电径向收缩,通过侧向探测管来确定吸收长度成为关键问题。由碰撞辐射模型计算出的亚稳态和共振原子密度与测量值的良好一致性,证明了所开发方法的有效性。该模型强调了分子离子动力学对Ar 1 4s能级种群的影响,并揭示了一个有效的3步电离过程,涉及4s和4p能级形成原子离子。

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