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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Investigation of the shape of the R(0) absorption line in (V3), N2O recorded from an axisymmetric supersonic free jet expansion
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Investigation of the shape of the R(0) absorption line in (V3), N2O recorded from an axisymmetric supersonic free jet expansion

机译:轴对称超音速自由射流扩展记录的(V3),N2O中R(0)吸收线的形状研究

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摘要

The hydrodynamic structure of an axisymmetric supersonic expansion can be regarded as a series of concentric divergent cones, with decreasing particle densities as the cone angle increases. Different groups of molecules therefore contribute to high-resolution absorption line shapes when optically probing the expansion in a direction perpendicular to the jet axis. These groups are distinguished by the cone angle, inducing a specific Doppler shift, and by the particle density, contributing a specific weight to the absorption intensity. As a result different broader line profiles are observed compared to room temperature spectra. This effect is investigated here selecting as the working example the R(0), v(3) absorption line in N2O recorded using a Fourier transform interferometer. Independent impact pressure and quadrupole mass spectrometric measurements are performed leading to two complementary maps of the expansion, allowing the recorded absorption line shape to be quantitatively modeled. (c) 2006 Elsevier Ltd. All rights reserved.
机译:轴对称超音速膨胀的流体力学结构可以看作是一系列同心发散锥,随着锥角的增加,其颗粒密度减小。因此,当在垂直于射流轴的方向上光学探测膨胀时,不同的分子组有助于高分辨率的吸收线形状。这些组的区别在于锥角(引起特定的多普勒频移)和颗粒密度(对吸收强度贡献特定的重量)。结果,与室温光谱相比,观察到不同的较宽的线轮廓。在此研究此效应,选择使用傅立叶变换干涉仪记录的N2O中的R(0),v(3)吸收线作为工作示例。进行独立的冲击压力和四极质谱测量,得出两个互补的扩展图,从而可以对所记录的吸收线形状进行定量建模。 (c)2006 Elsevier Ltd.保留所有权利。

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