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CHEMICAL LASERS HISTORY AND THEORY
THEORETICAL DESIGN CONSIDERATIONS
4 other sections not shown
20 ROTATIONAL QUANTUM anharmonic atomic cavity residence chapter chemical laser chemical reaction chlorine chlorine heater collisional converging-diverging nozzle deactivation detonation wave downstream pressure Einstein coefficient energy level system Equation equilibrium excited species exit diameter expansion flames flashlamp flow system flow tunnel gain coefficient GAIN FOR PARTIAL HC1 laser HC1 molecules heat heat capacity ratio Hp-Clp hydrogen and chlorine hydrogen chloride ignition kinetic laser action laser based laser cavity laser emission laser gain Lennard-Jones potential Mach disc Mach number maximum gain mixtures nozzle exit nozzle throat optical PARTIAL POPULATION INVERSION PHOTOGRAPH OF H2-C12 range ratio reaction energy reaction zone Reference relaxation rotational partition function ROTATIONAL QUANTUM NUMBER rotational temperature Schlieren SCHLIEREN PHOTOGRAPH shock wave shown in Figure simple harmonic oscillator sonic nozzle spontaneous emission stagnation temperature stimulated emission supersonic nozzle Table tanks tion torr tube velocity vibrational energy vibrational temperature vibrational-rotational vibrationally excited ZND plane