首页> 外文期刊>The Astrophysical journal >TURBULENCE SPECTRA FROM DOPPLER-BROADENED SPECTRAL LINES: TESTS OF THE VELOCITY CHANNEL ANALYSIS AND VELOCITY COORDINATE SPECTRUM TECHNIQUES
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TURBULENCE SPECTRA FROM DOPPLER-BROADENED SPECTRAL LINES: TESTS OF THE VELOCITY CHANNEL ANALYSIS AND VELOCITY COORDINATE SPECTRUM TECHNIQUES

机译:多普勒谱线的湍流谱:速度通道分析和速度坐标谱技术的测试

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Turbulent motions induce Doppler shifts of observable emission and absorption lines motivating studies of turbulence using precision spectroscopy. We provide numerical testing of the two most promising techniques, velocity channel analysis and velocity coordinate spectrum (VCS). We obtain an expression for the shot noise that the discretization of the numerical data entails and successfully test it. We show that the numerical resolution required for recovering the underlying turbulent spectrum from observations depend on the spectral index of velocity fluctuations, which makes low-resolution testing misleading. We demonstrate numerically that, when dealing with absorption lines, sampling of turbulence along just a dozen directions provides a high quality spectrum with the VCS technique.
机译:湍流运动引起可观察到的发射线和吸收线的多普勒频移,从而推动了使用精密光谱学研究湍流。我们提供两种最有前途的技术的数值测试,即速度通道分析和速度坐标谱(VCS)。我们获得了散粒噪声的表达式,数值数据需要离散化并成功对其进行了测试。我们表明,从观测中恢复基础湍流光谱所需的数值分辨率取决于速度波动的光谱指数,这会使低分辨率测试产生误导。我们用数值方法证明,当处理吸收线时,仅使用十几个方向的湍流采样就可以通过VCS技术获得高质量的频谱。

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