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Multi-point Interferometric Rayleigh Scattering Using Dual-pass Light Recirculation

机译:使用双通光再循环多点干涉瑞利散射

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This paper describes for the first time an interferometric Rayleigh scattering system using dual-pass light recirculation (IRS-LR) capable of simultaneously measuring at multiple points two orthogonal components of flow velocity in combustion flows using single shot laser probing. An additional optical path containing the interferometer input mirror, a quarter-wave plate, a polarization dependent beam combiner, and a high reflectivity mirror partially recirculates the light that is rejected by the interferometer. Temporally- and spatially-resolved acquisitions of Rayleigh spectra in a large-scale combustion-heated supersonic axi-symmetric jet were performed to demonstrate the technique. Recirculating of Rayleigh scattered light increases the number of photons analyzed by the system up to a factor of 1.8 compared with previous configurations. This is equivalent to performing measurements with less laser energy or performing measurements with the previous system in gas flows at higher temperatures.
机译:本文介绍了使用双通光再循环(IRS-LR)的干涉式瑞利散射系统,其能够在燃烧流程中的多个点在多个点的两个正交分量中使用单次射击激光探测来测量。包含干涉仪输入镜的附加光路,四分之一波片,偏振偏振光束组合器和高反射镜部分地重新覆盖由干涉仪拒绝的光。进行在大规模燃烧加热的超音速轴对称射流中的瑞利光谱的时间和空间分辨的采集以证明该技术。 Rayleigh散射光的再循环增加了由系统分析的光子的数量与先前的配置相比的倍数为1.8。这相当于执行具有较少激光能量的测量或在较高温度下与先前的气体流动的测量进行测量。

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