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首页> 外文期刊>The Astrophysical journal >INTRINSIC, OBSERVED, AND RETRIEVED PROPERTIES OF INTERSTELLAR TURBULENCE
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INTRINSIC, OBSERVED, AND RETRIEVED PROPERTIES OF INTERSTELLAR TURBULENCE

机译:星际湍流的内在,观察和检索特性

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摘要

We generate synthetic observations of three-dimensional, self-gravitating MHD simulations of the interstellar medium (ISM) to evaluate the ability of principal component analysis (PCA) to measure the scale dependence of turbulent velocity fluctuations in molecular clouds. Scaling exponents, α, observationally obtained from the coupled characteristic scales for line profile variability in velocity, δv, and in space, L, where δv ∝ L~α, are compared with the intrinsic scaling exponents of the MHD velocity fields. We determine the approximate structure function order at which PCA operates in order to then verify a previously established calibration of the PCA method. We also analyze the statistical properties of projected velocity line centroid fields, including effects of intermittent velocity fluctuations, density inhomogeneity, and opacity, and examine the relationship of the projected two-dimensional statistics to the intrinsic three-dimensional statistics. Using PCA, we infer steep three-dimensional energy spectra in the molecular ISM, generally steeper than can be accounted for by Kolmogorov turbulence or possibly even shock-dominated turbulence.
机译:我们生成星际介质(ISM)的三维自重MHD模拟的综合观察结果,以评估主成分分析(PCA)测量分子云中湍流速度波动的尺度依赖性的能力。从速度δv和空间L(其中δv∝ L〜α)的线轮廓变化的耦合特征量标中观察到的标度指数α与MHD速度场的内在标度指数进行比较。我们确定PCA操作的近似结构函数顺序,以便随后验证PCA方法的先前建立的校准。我们还分析了投影速度线质心场的统计属性,包括间歇速度波动,密度不均匀性和不透明度的影响,并检查了投影二维统计量与固有三维统计量之间的关系。使用PCA,我们可以推断分子ISM中陡峭的三维能谱,通常比由Kolmogorov湍流甚至可能由冲击为主的湍流所能解释的陡。

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