Direct evidence of departure from local thermodynamic equilibrium in a free-burning arc-discharge plasma
S. C. Snyder, G.D. Lassahn, L. D. Reynolds
Abstract
S. C. Snyder, G.D. Lassahn, L. D. Reynolds
Abstract
Radial profiles of gas temperature, electron temperature, and electron density were measured in a free-burning atmospheric-pressure argon arc-discharge plasma using line-shape analysis of scattered laser light. This method yields gas temperature, electron temperature, and electron density directly, with no reliance on the assumption of local thermodynamic equilibrium (LTE). Our results show a significant departure from LTE in the center of the discharge, contrary to expectations.
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Radial profiles of gas temperature, electron temperature, and electron density were measured in a free-burning atmospheric-pressure argon arc-discharge plasma using line-shape analysis of scattered laser light. This method yields gas temperature, electron temperature, and electron density directly, with no reliance on the assumption of local thermodynamic equilibrium (LTE). Our results show a significant departure from LTE in the center of the discharge, contrary to expectations.
Key concepts: Electron temperature, Plasma, Argon, Atomic physics, Electron density, Thermodynamic equilibrium, Materials science, Atmospheric pressure