Self-absorption model of Hg–TℓI high pressure discharge

Author:

Ghrib Basma1ORCID,Bouaoun Mohamed1,Elloumi Hatem1ORCID

Affiliation:

1. BP 1172-LaTICE Lab-ENSIT, University of Sfax-IPEIS , 3018 Sfax, Tunisia

Abstract

This paper deals with self-absorption in a cylindrical high-pressure Hg–TℓI discharge for which local thermodynamic equilibrium can be assumed. Calculations of the densities of species, especially thallium, have been performed using a parabolic temperature profile and a constant mercury/thallium ratio throughout the discharge tube. This paper focuses on studying the self-absorption thallium lines by comparing them to those of mercury. Particular attention has been paid to the study of the additive effects on the self-absorption of spectral intensities.

Publisher

AIP Publishing

Reference11 articles.

1. Abdennadher, T., “Etude experimentale des raies 546, 1 nm du’ mercure et 535-655 nm du thallium dans des decharges haute pression mercure et mercure dope,” These d’Universite, Universite Paul Sabatier, Toulouse, 1985.

2. Discrete ordinates method in the analysis of the radiative transfer in high intensity discharge lamps;J. Phys. D: Appl. Phys.,2005

3. Drakakis, E., “Comparaison des formalismes de bartels et des paramètres multiples. Application à l’étude de décharges mercure et mercure dopées à l’iodure de thallium,” Thèse d’Université, Université Paul Sabatier, Toulouse, 1988.

4. The determination of the neutral atom density in a high-pressure mercury discharge from the 253.7 nm self-reversed resonance line;J. Phys. D: Appl. Phys.,1997

5. Calculation of temperature profiles of high pressure electric arcs using the diffusion approximation for radiation transfer;J. Quant. Spectrosc. Radiat. Transfer,1969

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