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- W2096753395 abstract "This work investigates the spatial structure of a microwave plasma torch driven by an azimuthally symmetric surface wave operating in N2-Ar mixtures at atmospheric pressure. The main plasma and wave characteristics are obtained in the framework of a self-consistent 2D model that describes the entire spatial structure of this source, including the discharge zone, sustained by the field of the surface TM00 mode, and the post-discharge plasma. The set of equations considered to describe the plasma source include: Maxwell's equations; the dispersion equation of the surface mode; the rate balance equations for vibrationally excited states of electronic ground state molecules N2(X1Σ+g,ν); the rate balance equations for the triplet N2(A3Σ+u,B3Πg,C3Πu) and singlet N2(a'1 Σ−u,a1Πg,w1Δ u,a''1Σ+u) electronic excited states of nitroge and the Ar(3p54s) and Ar(3p54p) excited states of Argon; the rate balance equations for N+,N+2,N+3,N+4,Ar+,Ar+2 ions and electrons; the rate balance equations for the ground state N(4S) and the metastable states N(2P, 2D) of nitrogen atoms; the gas thermal balance equation; and the equation of mass conservation for the fluid. Model calculations of the 2D spatial distributions of species of interest such as charged particles (electrons and positive ions), N2(X1Σ+g, ν) vibrationally excited molecules, N2(A3Σ+u) metastables and N(4S) ground state atoms are presented and discussed." @default.
- W2096753395 created "2016-06-24" @default.
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- W2096753395 date "2014-06-03" @default.
- W2096753395 modified "2023-09-26" @default.
- W2096753395 title "Microwave N2-Ar Plasma Torch" @default.
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- W2096753395 doi "https://doi.org/10.1088/1742-6596/516/1/012004" @default.
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