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首页> 外文期刊>The Astrophysical journal >THE STRUCTURE OF THE LOCAL INTERSTELLAR MEDIUM. IV. DYNAMICS, MORPHOLOGY, PHYSICAL PROPERTIES, AND IMPLICATIONS OF CLOUD-CLOUD INTERACTIONS
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THE STRUCTURE OF THE LOCAL INTERSTELLAR MEDIUM. IV. DYNAMICS, MORPHOLOGY, PHYSICAL PROPERTIES, AND IMPLICATIONS OF CLOUD-CLOUD INTERACTIONS

机译:当地星际介质的结构。 IV。动态,形态,物理特性以及对云交互的影响

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摘要

We present an empirical dynamical model of the LISM based on 270 radial velocity measurements for 157 sight lines toward nearby stars. Physical parameter measurements (i.e., temperature, turbulent velocity, depletions) are available for 90 components, or one-third of the sample, enabling initial characterizations of the physical properties of LISM clouds. The model includes 15 warm clouds located within 15 pc of the Sun, each with a different velocity vector. We derive projected morphologies of all clouds and estimate the volume filling factor of warm partially ionized material in the LISM to be between ~5.5% and 19%. Relative velocities of potentially interacting clouds are often supersonic, consistent with heating, turbulent, and metal depletion properties. Cloud-cloud collisions may be responsible for the filamentary morphologies found in ~1/3 of LISM clouds, the distribution of clouds along the boundaries of the two nearest clouds (LIC and G), the detailed shape and heating of the Mic Cloud, the location of nearby radio scintillation screens, and the location of an LISM cold cloud. Contrary to previous claims, the Sun appears to be located in the transition zone between the LIC and G Cloud.
机译:我们基于对附近恒星的157条视线的270个径向速度测量值,提出了LISM的经验动力学模型。可以对90个成分或样本的三分之一进行物理参数测量(即温度,湍流速度,损耗),从而可以对LISM云的物理性质进行初步表征。该模型包括位于太阳15 pc内的15个暖云,每个云具有不同的速度矢量。我们推导出了所有云的预测形态,并估计了LISM中温暖的部分电离物质的体积填充系数在〜5.5%至19%之间。潜在相互作用的云的相对速度通常是超音速的,与加热,湍流和金属耗竭特性一致。云与云的碰撞可能是造成〜1/3的LISM云中的丝状形态,沿两个最近的云(LIC和G)边界的云分布,Mic云的详细形状和加热,附近的无线电闪烁屏幕的位置,以及LISM冷云的位置。与先前的说法相反,太阳似乎位于LIC和G Cloud之间的过渡区域。

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