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GLOWS AND ARCS MICROWAVE DISCHARGES
Masurenko A N Makarevich D A Soloviyanchik
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anode argon atoms axial axis beam broadening caesium calculated cathode channel charge Chem collisional collisions concentration constant corresponding cross-section current density curves decay decrease dependence determined diameter diffusion discharge current distribution drift effect elec electric field electron density electron temperature emission energy equation equilibrium excitation experiment Fig.l Figure frequency function gases glow discharge helium increase inelastic collisions instability intensity interaction investigated ionisation kinetic laser layer levels magnetic field maximum mbar measured metastable mixture mode molecules negative neutral nitrogen nonlinear observed obtained optical oscillations parameters particle perturbation photomultiplier Phys Physics plasma column Plasma Physics positive column potential pressure probe processes profiles propagation proton pulse quenching radiation radiative radius rate coefficients ratio reaction recombination References region resonance shown shows soliton spectral lines spectrum Stark studied surface theoretical theory thermal tion Torr tron tube values variation velocity vibrational voltage width