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首页> 外文期刊>The Astrophysical journal >Studying Velocity Turbulence From Doppler-broadened Absorption Lines: Statistics Of Optical Depth Fluctuations
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Studying Velocity Turbulence From Doppler-broadened Absorption Lines: Statistics Of Optical Depth Fluctuations

机译:从多普勒扩展吸收线研究速度湍流:光学深度波动的统计

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摘要

We continue our work on developing techniques for studying turbulence with spectroscopic data. We show that Doppler-broadened absorption spectral lines, in particular, saturated absorption lines, can be used within the framework of the previously introduced technique termed the velocity coordinate spectrum (VCS). The VCS relates the statistics of fluctuations along the velocity coordinate to the statistics of turbulence; thus, it does not require spatial coverage by sampling directions in the plane of the sky. We consider lines with different degree of absorption and show that for lines of optical depth less than one, our earlier treatment of the VCS developed for spectral emission lines is applicable, if the optical depth is used instead of intensity. This amounts to correlating the logarithms of absorbed intensities. For larger optical depths and saturated absorption lines, we show that only wings of the line are available for the analysis. In terms of the VCS formalism, this results in introducing an additional window, whose size decreases with the increase of the optical depth. As a result, strongly saturated absorption lines only carry the information about the small-scale turbulence. Nevertheless, the contrast of the fluctuations corresponding to the small-scale turbulence increases with the increase of the optical depth, which provides advantages for studying turbulence by combining lines with different optical depths. By combining different absorption lines one can develop a tomography of the turbulence in the interstellar gas in all its complexity.
机译:我们继续致力于开发利用光谱数据研究湍流的技术。我们表明,多普勒增宽的吸收谱线,特别是饱和吸收谱线,可以在先前引入的称为速度坐标谱(VCS)的技术的框架内使用。 VCS将沿速度坐标的涨落统计与湍流统计联系起来;因此,它不需要通过采样天空平面中的方向来进行空间覆盖。我们考虑了吸收程度不同的谱线,并表明对于光学深度小于1的谱线,如果使用光学深度代替强度,则我们对光谱发射谱线开发的VCS的早期处理是适用的。这相当于关联吸收强度的对数。对于更大的光学深度和饱和吸收线,我们表明只有该线的翼部可用于分析。就VCS形式而言,这导致引入了一个附加的窗口,该窗口的大小随光学深度的增加而减小。结果,强烈饱和的吸收线仅携带有关小尺度湍流的信息。然而,随着光学深度的增加,对应于小尺度湍流的涨落的对比度也随之增加,这为通过组合具有不同光学深度的线来研究湍流提供了优势。通过组合不同的吸收线,可以对星际气体中的湍流进行复杂的层析成像。

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