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REACTANT STATE SPECIFICATION BY COMBINED CHEMICAL
CONVENTIONS AND NOTATION
EXPERIMENTAL CHEMICAL LASERS
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1575 joule flash 50 torr alignment Aperture assigned population ratio bound of N^/Nq Brewster's angle capacitor chemical kinetics chemical laser apparatus chemical laser experiment Chemical laser pulse chemical systems defined a lower detector deuterium diffraction grating electrode emission experiments were run Figure III-5 Figure V-l notes flash profile Flashlamp flashtube at 1575 free running function gain plots greatest lower bound HeNe highest gain transition joule flash energies lased at approximately laser cavity laser tube lasing species lasing transitions Mirror R.C. Modeling plot optical axis optical cavity oscilloscope output PAPER LASER photolytic Plexiglas population inversion population ratio assignment pulse initiation pulse timing data radiation radius of curvature relative gain rovibrational set a lower spark gap Suprasil flashtube Table III-l Table V-l notes teflon Transitions Table tuned chemical laser UHF connectors upper bound vacuum vibrational band vibrational energy partitioning vibrational population ratios wavelength