首页> 外文期刊>IEEE Journal of Quantum Electronics >Diode-laser-based absorption spectroscopy diagnostics of a jet-type O/sub 2/(/sup 1//spl Delta/) generator for chemical oxygen-iodine lasers
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Diode-laser-based absorption spectroscopy diagnostics of a jet-type O/sub 2/(/sup 1//spl Delta/) generator for chemical oxygen-iodine lasers

机译:用于化学氧碘激光器的喷射式O / sub 2 /(/ sup 1 // spl Delta /)发生器的基于二极管激光的吸收光谱诊断

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Using diode-laser-based diagnostics, O/sub 2/(/sup 1//spl Delta/) yield and water vapor fraction were measured at the exit of a jet-type singlet oxygen generator (JSOG) for a chemical oxygen-iodine laser (COIL). Chlorine utilization and gas temperature at the generator exit were also measured, simultaneously. For conditions corresponding to the maximum chemical efficiency of the supersonic COIL energized by the JSOG, the O/sub 2/(/sup 1//spl Delta/) yield, water vapor fraction, chlorine utilization, and temperature at the generator exit are 0.65, 0.08 and 0.92, and 30/spl deg/C, respectively. Increase of the basic hydrogen peroxide temperature results in an increase of the water vapor fraction caused by an increase of the saturated water vapor pressure in the generator. As the pressure in the generator rises from 18 to 60 torr, the yield decreases from 0.65 to O.48. Dependence of the yield on the generator pressure is consistent with a rate constant for the O/sub 2/(/sup 1//spl Delta/) energy pooling reaction of 2.7/spl times/10/sup -17/ cm/sup 3//spl middot/S/sup -1/. The same rate constant explains the measured variation of the temperature along the flow in the diagnostic cell.
机译:使用基于二极管激光的诊断程序,在喷射式单重态氧气发生器(JSOG)的出口处测量化学氧碘的O / sub 2 /(/ sup 1 // spl Delta /)产率和水蒸气分数激光(COIL)。同时还测量了发生器出口处的氯利用率和气体温度。对于与由JSOG激励的超音速COIL的最大化学效率相对应的条件,O / sub 2 /(/ sup 1 // spl Delta /)的产率,水蒸气分数,氯的利用率和发生器出口的温度为0.65 ,分别为0.08和0.92,以及30 / spl℃/℃。基本过氧化氢温度的增加导致水蒸气分数的增加,这是由发生器中饱和水蒸气压力的增加引起的。随着发生器中的压力从18托上升到60托,产率从0.65下降到O.48。产量对发电机压力的依赖性与O / sub 2 /(/ sup 1 // spl Delta /)能量池反应的速率常数2.7 / spl次/ 10 / sup -17 / cm / sup 3一致。 // spl middot / S / sup -1 /。相同的速率常数说明了沿着诊断单元中的流动测得的温度变化。

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