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Negative Ion Formation in Gas Lasers
High Pressure Ion Kinetics
Relaxation of Molecules Exchanging Vibrational Energy
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absorption Appl argon atomic Bates beam Biondi Boltzmann Boltzmann distribution Brau calculated Celto Chem collisional collisions cross section curve dimer discussed distribution electron density electron energy electron-beam emission energy transfer equation excimer laser excited experimental extraction efficiency Flannery fluorescence formation gas density gas lasers glow discharge halogen harmonic oscillator HgBr(B HgBr2 high pressure IEEE increases instability interaction ionization ionization potential Jacob kinetic laser discharges laser mixture laser pumping lasing Lett measured metastable mode molecular molecules negative ions neon Nighan observed oscillator peak photoionization Phys plasma population population inversion potential predicted preionization production pulse Quantum Electron quantum number quenching rate coefficient rate constant reaction recombination region Rokni rotational levels Setser shown in Fig spark species Tellinghuisen temperature termolecular tion transitions upper laser level V-T rates V-V pumping vibrational energy vibrational relaxation voltage wavelength XeCl xenon