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采用反向传播光束的高空间分辨率一维旋转相干反斯托克斯拉曼光谱成像。

High-spatial-resolution one-dimensional rotational coherent anti-Stokes Raman spectroscopy imaging using counterpropagating beams.

机构信息

Combustion Research Facility, Sandia National Laboratory, Livermore, California 94551, USA.

出版信息

Opt Lett. 2012 Jan 15;37(2):229-31. doi: 10.1364/OL.37.000229.

Abstract

A counterpropagating phase-matching geometry is employed for high-spatial-resolution one-dimensional (1D) imaging of temperature and O2-to-N2 concentration ratio using picosecond pure-rotational coherent anti-Stokes Raman spectroscopy (RCARS) over a large field (20 mm). A single-shot 1D RCARS image of more than 20 mm in length is thus acquired at 300 K in air. High-resolution 1D RCARS flame measurements are demonstrated using a custom-built burner and a premixed methane/air flame (Φ=0.6). This phase-matching scheme improves the spatial resolution by approximately 1 order of magnitude when compared to the standard small-angle BOXCARS phase-matching schemes typically employed in CARS measurements. Additionally, for a 20 mm 1D image, signal levels are increased by 10(2) because of the higher irradiance provided in the current scheme.

摘要

采用反向传播相位匹配技术,结合皮秒纯转动相干反斯托克斯拉曼光谱(RCARS)技术,对温度和 O2 与 N2 浓度比进行高空间分辨率一维(1D)成像,实现了在大视场(20mm)下的测量。在 300K 下的空气中,单次拍摄即可获得 20mm 以上长度的 1D RCARS 图像。采用定制燃烧器和甲烷/空气预混火焰(Φ=0.6),对 1D RCARS 火焰测量进行了高分辨率演示。与通常用于 CARS 测量的标准小角度 BOXCARS 相位匹配方案相比,该相位匹配方案将空间分辨率提高了约 1 个数量级。此外,由于当前方案提供了更高的辐照度,对于 20mm 的 1D 图像,信号强度提高了 10(2)倍。

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