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Chemical oxygen-iodine laser with atomic iodine generated via fluorine atoms

机译:化学氟碘激光器,通过氟原子产生原子碘

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A chemical method of atomic iodine generation followed by iodine injection into the supersonic nozzle of Chemical Oxygen-Iodine Laser (COIL) was studied experimentally. This method is based on the reaction of gaseous hydrogen iodide (or deuterium iodide) with fluorine atoms formed in a preceding reaction between molecular fluorine and nitrogen oxide. Iodine atoms are generated in specially designed reactors and then injected into the primary gas flow in the COIL cavity. Concentration profiles of atomic iodine along the primary gas flow or perpendicularly to it were measured in dependence on the flow rates of reaction gases. Very high concentrations of atomic iodine (up to 3.2 x 10(15) cm(-3)) were measured in the laser cavity when the primary gas contained no singlet oxygen, O-2((1)Delta(g)). Yields of atomic iodine related to either F-2 or HI were rather high (I/F-2 <= 100%, I/HI <= 60%). A small signal gain on the I*-I laser transition was measured when atomic iodine was injected into the primary gas containing singlet oxygen. The measured gain was lower than the gain estimated from the determined concentration of atomic iodine, temperature, and O-2((1)A(g)) yield measured upstream the iodine admixing. This difference was ascribed to the O-2((1)A(g)) quenching by some product of DI oxidation (probably the radical DO2). (C) 2008 Elsevier B.V. All rights reserved.
机译:实验研究了一种化学方法,该方法产生原子碘,然后将碘注入化学氧碘激光器(COIL)的超音速喷嘴中。该方法基于气态碘化氢(或碘化氘)与在分子氟与氮氧化物之间先前反应中形成的氟原子的反应。碘原子是在专门设计的反应器中产生的,然后注入到COIL腔中的一次气流中。根据反应气体的流速,测量沿基本气流或垂直于基本气流的原子碘的浓度分布。当一次气体不含单线态氧O-2((1)Delta(g))时,在激光腔中测量到非常高浓度的原子碘(高达3.2 x 10(15)cm(-3))。与F-2或HI相关的原子碘的产率都很高(I / F-2 <= 100%,I / HI <= 60%)。当将原子碘注入含有单线态氧的一次气体中时,在I * -I激光跃迁上测得的信号增益很小。测得的增益低于根据确定的原子碘浓度,温度和在碘混合上游测得的O-2((1)A(g))产率估算的增益。这种差异归因于DI氧化的某些产物(可能是自由基DO2)对O-2((1)A(g))的淬灭。 (C)2008 Elsevier B.V.保留所有权利。

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