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THE OPTICAL–INFRARED EXTINCTION CURVE AND ITS VARIATION IN THE MILKY WAY

机译:银河系中的光学红外消光曲线及其变化

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The dust extinction curve is a critical component of many observational programs and an important diagnostic of the physics of the interstellar medium. Here we present new measurements of the dust extinction curve and its variation toward tens of thousands of stars, a hundred-fold larger sample than in existing detailed studies. We use data from the APOGEE spectroscopic survey in combination with ten-band photometry from Pan-STARRS1, the Two Micron All-Sky Survey, and Wide-field Infrared Survey Explorer. We find that the extinction curve in the optical through infrared is well characterized by a one-parameter family of curves described by R(V). The extinction curve is more uniform than suggested in past works, with , and with less than one percent of sight lines having . Our data and analysis have revealed two new aspects of Galactic extinction: first, we find significant, wide-area variations in R(V) throughout the Galactic plane. These variations are on scales much larger than individual molecular clouds, indicating that R(V) variations must trace much more than just grain growth in dense molecular environments. Indeed, we find no correlation between R(V) and dust column density up to . Second, we discover a strong relationship between R(V) and the far-infrared dust emissivity.
机译:消尘曲线是许多观测计划的关键组成部分,也是星际介质物理学的重要诊断。在这里,我们介绍了尘埃消光曲线及其向数万颗恒星变化的新测量值,这是现有详细研究中的百倍大样品。我们将APOGEE光谱调查中的数据与Pan-STARRS1的十波段测光法,“两微米全天空”调查和“宽视野红外调查”浏览器结合使用。我们发现,通过红外光的消光曲线由R(V)描述的一参数曲线系列很好地表征。的消光曲线比以往的作品更均匀,并且视线中有且的视线不到百分之一。我们的数据和分析揭示了银河灭绝的两个新方面:首先,我们发现整个银河平面内R(V)的显着,广域变化。这些变化在规模上要比单个分子云大得多,这表明在稠密的分子环境中,R(V)变化所追踪的不仅仅是颗粒生长。确实,我们发现R(V)和粉尘柱密度(不超过)之间没有相关性。其次,我们发现R(V)与远红外粉尘发射率之间存在很强的关系。
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