论文标题
本地星际云中的不均匀性
Inhomogeneity within Local Interstellar Clouds
论文作者
论文摘要
在附近恒星的高分辨率{\ emHST}光谱中观察到的星际吸收线的分析提供了温度,湍流速度和热星云的动力学特性。先前的研究确定了15个在太阳约10 〜PC内部分离子化的云,并测量了它们的平均热和运动学特性。对100个星际速度成分的新分析揭示了局部星际云(LIC)和其他附近云的广泛温度和湍流速度。这些变化似乎是随机的,具有高斯分布。我们发现这些特性没有出色的距离,与银河系中心的角度,EUV辐射的主要来源(星$ε$ 〜CMA),LIC中心或将星际物质流入地球圈的方向。 LIC温度变化的空间尺度可能小于5,100〜AU,这是太阳在1000年内越过的距离。本质上,所有速度成分与已知的温云保持一致。我们发现,在太阳的4点pc之内,空间完全充满了部分离子化的云,但是在较大的距离处,空间仅部分填充了部分离子化的云,表明完全电离的云间气体填充了空隙。我们发现,CLIC中LIC的中性氢密度密度约为0.10〜cm $^{ - 3} $,而不是0.20〜cm $^{ - 3} $密度,可能仅代表LIC的直接环境。气体的3,000--12,000〜K温度范围与WNM和WIM的理论模型的预测一致,但是云中的高度不均匀性反对简单的理论模型。最后,我们发现了对星际狮子座的视线冲击的证据。
Analysis of interstellar absorption lines observed in high-resolution {\em HST} spectra of nearby stars provides temperatures, turbulent velocities, and kinetic properties of warm interstellar clouds. Previous studies identified 15 warm partially ionized clouds within about 10~pc of the Sun and measured their mean thermal and kinematic properties. A new analysis of 100 interstellar velocity components reveals a wide range of temperatures and turbulent velocities within the Local Interstellar Cloud (LIC) and other nearby clouds. These variations appear to be random with Gaussian distributions. We find no trends of these properties with stellar distance, angle from the Galactic Center, the main source of EUV radiation (the star $ε$~CMa), the center of the LIC, or the direction of inflowing interstellar matter into the heliosphere. The spatial scale for temperature variations in the LIC is likely smaller than 5,100~au, a distance that the Sun will traverse in 1,000 years. Essentially all velocity components align with known warm clouds. We find that within 4~pc of the Sun, space is completely filled with partially ionized clouds, but at larger distances space is only partially filled with partially ionized clouds, indicating that fully ionized inter-cloud gas fills the voids. We find that the neutral hydrogen number density in the LIC and likely other warm clouds in the CLIC is about 0.10~cm$^{-3}$ rather than the 0.20~cm$^{-3}$ density that may be representative of only the immediate environment of the LIC. The 3,000--12,000~K temperature range for the gas is consistent with the predictions of theoretical models of the WNM and WIM, but the high degree of inhomogeneity within clouds argues against simple theoretical models. Finally, we find evidence for a shock in the sight line to the star AD~Leo.