Ercolano Barbara, Pascucci Ilaria
Universitäts-Sternwarte München, Scheinerstraße 1, 81679 München, Germany.
Excellence Cluster Origin and Structure of the Universe, Boltzmannstrasse 2, 85748 Garching bei München, Germany.
R Soc Open Sci. 2017 Apr 26;4(4):170114. doi: 10.1098/rsos.170114. eCollection 2017 Apr.
Discs of gas and dust around million-year-old stars are a by-product of the star formation process and provide the raw material to form planets. Hence, their evolution and dispersal directly impact what type of planets can form and affect the final architecture of planetary systems. Here, we review empirical constraints on disc evolution and dispersal with special emphasis on transition discs, a subset of discs that appear to be caught in the act of clearing out planet-forming material. Along with observations, we summarize theoretical models that build our physical understanding of how discs evolve and disperse and discuss their significance in the context of the formation and evolution of planetary systems. By confronting theoretical predictions with observations, we also identify the most promising areas for future progress.
围绕着有着数百万年历史恒星的气体和尘埃盘是恒星形成过程的副产品,并为行星形成提供原材料。因此,它们的演化和消散直接影响可以形成何种类型的行星,并影响行星系统的最终结构。在此,我们回顾关于盘演化和消散的经验性限制,特别强调过渡盘,这是一类似乎正处于清除行星形成物质过程中的盘。除了观测结果,我们还总结了构建我们对盘如何演化和消散的物理理解的理论模型,并讨论它们在行星系统形成和演化背景下的意义。通过将理论预测与观测结果相对比,我们还确定了未来最有希望取得进展的领域。