Accretion disks in luminous young stellar objects

IF 27.8 1区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS The Astronomy and Astrophysics Review Pub Date : 2016-01-11 DOI:10.1007/s00159-015-0089-z
M. T. Beltrán, W. J. de Wit
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引用次数: 120

Abstract

An observational review is provided of the properties of accretion disks around young stars. It concerns the primordial disks of intermediate- and high-mass young stellar objects in embedded and optically revealed phases. The properties were derived from spatially resolved observations and, therefore, predominantly obtained with interferometric means, either in the radio/(sub)millimeter or in the optical/infrared wavelength regions. We make summaries and comparisons of the physical properties, kinematics, and dynamics of these circumstellar structures and delineate trends where possible. Amongst others, we report on a quadratic trend of mass accretion rates with mass from T?Tauri stars to the highest mass young stellar objects and on the systematic difference in mass infall and accretion rates.

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明亮的年轻恒星物体中的吸积盘
对年轻恒星周围吸积盘的特性进行了观测回顾。它关注的是中质量和高质量年轻恒星物体在嵌入和光学显示阶段的原始盘。这些特性来自于空间分辨的观测,因此,主要是通过干涉手段获得的,无论是在无线电/(亚)毫米波段还是在光学/红外波段。我们对这些星周结构的物理性质、运动学和动力学进行总结和比较,并在可能的情况下描绘出趋势。其中,我们报告了质量吸积率随质量从T?金牛座恒星与质量最高的年轻恒星天体在质量下降率和吸积率上有系统差异。
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来源期刊
The Astronomy and Astrophysics Review
The Astronomy and Astrophysics Review 地学天文-天文与天体物理
CiteScore
45.00
自引率
0.80%
发文量
7
期刊介绍: The Astronomy and Astrophysics Review is a journal that covers all areas of astronomy and astrophysics. It includes subjects related to other fields such as laboratory or particle physics, cosmic ray physics, studies in the solar system, astrobiology, instrumentation, and computational and statistical methods with specific astronomical applications. The frequency of review articles depends on the level of activity in different areas. The journal focuses on publishing review articles that are scientifically rigorous and easily comprehensible. These articles serve as a valuable resource for scientists, students, researchers, and lecturers who want to explore new or unfamiliar fields. The journal is abstracted and indexed in various databases including the Astrophysics Data System (ADS), BFI List, CNKI, CNPIEC, Current Contents/Physical, Chemical and Earth Sciences, Dimensions, EBSCO Academic Search, EI Compendex, Japanese Science and Technology, and more.
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