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首页> 外文期刊>Applied optics >Application of a diode-laser absorption technique with the D-2 transition of atomic Rb for hypersonic flow-field measurements
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Application of a diode-laser absorption technique with the D-2 transition of atomic Rb for hypersonic flow-field measurements

机译:具有原子Rb的D-2跃迁的二极管激光吸收技术在高超声速流场测量中的应用

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With a first application of semiconductor lasers to absorption measurements of seeded atomic Rb in high-enthalpy flow fields, a diagnostic technique for time-resolved determination of flow velocity and gas temperature with a line-shape analysis was developed. In our measurements a GaAlAs diode laser was used to scan repetitively at 15 kHz over 1.3 cm(-1) across the D-2 resonance transition (5S(1/2) --> 5P(3/2) 780.2 nm) of seeded atomic Rb to obtain multiple absorption line shapes. The time-dependent signal contains highly resolved spectral line-shape information, which we interpret by fitting the spectrally resolved line shapes to Voigt profiles. Kinetic temperatures in the range 900-1400 K and gas velocities in the range 3900-6200 ms(-1) were obtained from the Doppler-broadened component of the line shape and from the Doppler shift, respectively, of the absorption frequency. (C) 1998 Optical Society of America. [References: 13]
机译:随着半导体激光器首次应用于高焓流场中种子原子Rb的吸收测量,开发了一种利用线形分析在时间上确定流速和气体温度的诊断技术。在我们的测量中,使用GaAlAs二极管激光器在种子的D-2共振跃迁(5S(1/2)-> 5P(3/2)780.2 nm)上以1.3 kHz(-1)的频率以15 kHz重复扫描原子Rb以获得多个吸收线形状。随时间变化的信号包含高度解析的光谱线形信息,我们通过将光谱解析的线形拟合到Voigt轮廓来进行解释。分别从线形的多普勒增宽分量和吸收频率的多普勒频移获得900-1400 K范围内的动力学温度和3900-6200 ms(-1)内的气体速度。 (C)1998年美国眼镜学会。 [参考:13]

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