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Performance of a high-efficiency 5-cm gain length supersonic chemical oxygen-iodine laser

机译:高效5厘米增益长度超声化学氧碘激光器的性能

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The Air Force Phillips Laboratory has developed a small-scale supersonic chemical oxygen-iodine laser (COIL) test stand (VertiCOIL) to rapidly evaluate emerging potential technology improvements. VertiCOIL was designed to address issues relevant to military and commercial applications such as long run time, high-efficiency operation, and compact design. VertiCOIL demonstrated an overall chemical efficiency of nearly 27%, one of the highest chemical efficiencies ever achieved by a COIL. In addition, VertiCOIL was able to lase for greater than 1 h by employing a continuously cooled basic hydrogen peroxide (BHP) flowing loop. Measured resonator parameters were used with a simplified saturation model to calculate the optical extraction efficiency. The peak optical extraction efficiency predicted by the model was 0.82. The dependence of the predicted extraction efficiency on outcoupling fraction is in good agreement with experimental results. Combining the predicted extraction efficiency with the COIL heuristic equation results in good agreement between measured and predicted overall device chemical efficiency.
机译:空军菲利普斯实验室已经开发出一种小型超声波化学氧碘激光器(COIL)测试台(VertiCOIL),可以快速评估正在出现的潜在技术改进。 VertiCOIL旨在解决与军事和商业应用相关的问题,例如长时间运行,高效运行和紧凑设计。 VertiCOIL的整体化学效率接近27%,是有史以来COIL达到的最高化学效率之一。此外,通过使用连续冷却的碱性过氧化氢(BHP)流动回路,VertiCOIL能够发射1小时以上。将测得的谐振器参数与简化的饱和模型一起使用,以计算光提取效率。该模型预测的峰值光提取效率为0.82。预测提取效率对输出耦合分数的依赖性与实验结果非常吻合。将预测的提取效率与COIL启发式方程式相结合,可以在实测和预测的整体装置化学效率之间取得良好的一致性。

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