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Spatially resolved sub-Doppler overtone gain measurements in a small scale supersonic hydrogen fluoride laser.

机译:小型超音速氟化氢激光器中的空间分辨亚多普勒泛音增益测量。

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The overtone gain of a small-scale HF laser was measured using a sub-Doppler tunable diode laser system. Two-dimensional spatially resolved small signal gain and temperature maps were generated, which show a highly inhomogeneous gain medium indicating the dominant role that mixing of the fuel and oxidizer streams has in HF laser performance. The measured gain and temperature data were analyzed with the aid of a two-dimensional computational fluid dynamics code. To reduce uncertainty of important modeling input parameters, novel measurements of reactant concentration, flow velocity and gain length were made. Results show that reactant mixing mechanisms such as turbulence and large-scale vortex structures have a large effect on the gain averaged over a vertical profile while kinetic rate mechanisms such as reaction rate constants and reactant concentration have a greater effect on the maximum system gain. Overtone gain data measured while operating the laser saturated on the fundamental transitions are compared with fundamental lasing output spectra. In all cases, the data are consistent with an equilibrium rotational distribution.
机译:使用亚多普勒可调二极管激光器系统测量了小型HF激光器的泛音增益。生成了二维空间分辨的小信号增益和温度图,显示了高度不均匀的增益介质,表明燃料和氧化剂流的混合在HF激光性能中起主要作用。借助二维流体力学代码分析了测得的增益和温度数据。为了减少重要建模输入参数的不确定性,对反应物浓度,流速和增益长度进行了新颖的测量。结果表明,反应物混合机制(例如湍流和大规模旋涡结构)对垂直剖面上的平均增益有很大影响,而动力学速率机制(例如反应速度常数和反应物浓度)对最大系统增益有较大影响。将在基本跃迁上饱和的激光器工作时测得的泛音增益数据与基本激光输出光谱进行比较。在所有情况下,数据均与平衡旋转分布一致。

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