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Improvement in Suppression of Pulsed Nd:YAG Laser Light With Iodine Absorption Cells for Filtered Rayleigh Scattering Measurements

机译:碘吸收池用于滤波瑞利散射测量的抑制Nd:YAG脉冲激光的改进

摘要

Filtered Rayleigh scattering using iodine absorption cells is an effective technique for obtaining density, temperature, and velocity measurements in high speed confined flows. By tuning a single frequency laser to a strong iodine absorption line, stray scattered laser light can be greatly suppressed. For example, the minimum transmission predicted by an iodine absorption model calculation is less than 10(exp -5) at the 18788.44/cm line using a 200 mm absorption cell containing iodine vapor at 0.46 T. Measurements obtained by other researches using a CW Nd:YAG laser agree with the model calculations. However, measurements made by us and by others using Q-switched, injection-seeded, frequency doubled Nd:YAG lasers only show minimum transmission of about 3 x 10(exp -3). This greatly reduces the applicability of the filtered Rayleigh scattering technique using these lasers in experiments having large amounts of stray scattered laser light. The purposes of the present study are to characterize the spectrum of the excess light transmitted by the iodine cell and to make changes to the laser to reduce the transmitted laser light. Transmission data as a function of laser frequency for the iodine absorption line at 18788.44/cm are presented. A planar mirror Fabry-Perot interferometer was used to characterize the frequency spectrum of the light passed through the cell. Measurements taken with the laser tuned to the center of the iodine absorption line show the light transmitted through the iodine cell to have a component with a bandwidth of about 40 GHz. This is probably caused by other modes in the laser that exist in spite of the single frequency injection beam. A second broadband component was also observed, possibly caused by the laser flash lamps or by fluorescence. An intracavity etalon was installed in the laser oscillator cavity to suppress the 40 GHz component. Measurements taken with the etalon tuned to the injection frequency showed a reduction in the transmitted laser light. This improvement allows the iodine cell to block significantly more of the stray laser light in filtered Rayleigh scattering experiments. Examples are given of filtered Rayleigh scattering measurements showing the effect of the etalon on measurements taken in a Mach 3 flow in the NASA Lewis 4 inch by 10 inch supersonic wind tunnel.
机译:使用碘吸收池的滤波瑞利散射是一种在高速密闭流动中获得密度,温度和速度测量值的有效技术。通过将单频激光调谐到强碘吸收线,可以大大抑制杂散散射激光。例如,通过使用200mm吸收池(含0.46 T碘蒸汽),在18788.44 / cm线处,通过碘吸收模型计算预测的最小透射率小于10(exp -5)。通过其他研究使用连续波Nd获得的测量结果:YAG Laser同意模型计算。但是,我们和其他人使用调Q的,注入种子的,倍频的Nd:YAG激光器进行的测量仅显示了大约3 x 10(exp -3)的最小透射率。这大大降低了使用这些激光器的滤波瑞利散射技术在具有大量杂散散射激光的实验中的适用性。本研究的目的是表征碘电池传输的多余光的光谱,并对激光进行更改以减少传输的激光。给出了碘吸收线在18788.44 / cm处的传输数据与激光频率的关系。使用平面镜法布里-珀罗干涉仪来表征穿过电池的光的频谱。将激光调谐到碘吸收线的中心进行的测量显示,透过碘池传输的光具有带宽约为40 GHz的分量。这可能是由激光器中尽管存在单频注入光束而存在的其他模式引起的。还观察到第二宽带分量,可能是由激光闪光灯或荧光引起的。腔内标准具安装在激光振荡器腔中以抑制40 GHz分量。用标准具校准到注入频率进行的测量显示透射激光的减少。这种改进使碘池在过滤的瑞利散射实验中能够显着阻挡更多的杂散激光。给出了经过滤波的瑞利散射测量的示例,显示了标准具对在NASA Lewis 4英寸乘10英寸超音速风洞中的Mach 3流中进行的测量的影响。

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