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A study on an All Gas-Phase Iodine Laser based on NCl_3 reaction system

机译:基于NCl_3反应体系的全气相碘激光器的研究

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Numerical simulation and flow-tube experiments are conducted to understand the chemistry of the amine based all gas-phase iodine laser (AGIL). The numerical simulation code developed is a one-dimensional, multiple-leaky-stream-tubes kinetics code combined with all the known rate equations to date. The validity of the code is confirmed to compare the calculated results with experimental results reported elsewhere. We find that the key reactions to achieve positive gain are the deactivation reaction of excited iodine atoms by chlorine atoms and the self annihilation reactions of NCl(~1Δ). The order of the injection nozzles is crucial to suppress these reactions. It is shown that positive gain is possible with optimized flow rates and nozzle positions. Flow reactor experiments are conducted based on these calculations, and small signal gain is measured. The results are compared with the calculations.
机译:进行了数值模拟和流管实验,以了解基于胺的全气相碘激光器(AGIL)的化学性质。所开发的数值模拟代码是一维,多泄漏流管动力学代码,结合了迄今为止所有已知的速率方程。确认该代码的有效性,可以将计算结果与其他地方报告的实验结果进行比较。我们发现实现正增益的关键反应是激发的碘原子被氯原子钝化和NCl(〜1Δ)的自an灭反应。喷嘴的顺序对于抑制这些反应至关重要。结果表明,通过优化流速和喷嘴位置可以实现正增益。基于这些计算进行流动反应器实验,并测量小信号增益。将结果与计算结果进行比较。

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