

Publisher: Edp Sciences
E-ISSN: 1286-0050|80|1|10803-10803
ISSN: 1286-0042
Source: EPJ Applied Physics (The), Vol.80, Iss.1, 2017-10, pp. : 10803-10803
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Abstract
In this paper we present a self-consistent kinetic model to study the temporal variation of the gas temperature in the afterglow of a 440 Pa microwave nitrogen discharge operating at 433 MHz in a 3.8 cm diameter tube. The initial conditions in the afterglow are determined by a kinetic model that solves the electron Boltzmann equation coupled to the gas thermal balance equation and a system of rate-balance equations for N2(X 1
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