论文标题

原球盘的散布:恒星特性和当地环境如何决定进化的途径

Dispersal of protoplanetary discs: How stellar properties and the local environment determine the pathway of evolution

论文作者

Coleman, Gavin A. L., Haworth, Thomas J.

论文摘要

我们研究了在内部和外部光蒸发的作用以及不同程度的粘性运输的作用下进化的原星盘的演化和最终分散。我们确定了五种不同的分散途径,即i)长期存在的碟片($> 20 \,$ yr),ii)内部分散分散,内部光蒸发主导并打开内部孔,iii)外部分布在外部光蒸发中,外部光蒸发通过盘式截断来占主导地位,通过在外部盘式内部进行外部盘式或外部盘式的表征,以外部盘的外部材料或外部盘的外部材料,或者是外部盘式的,或者在外部盘式中均具有外部盘状或外部的外部材料。我们确定寿命,内部和外部风的相对影响以及清除途径在恒星/盘/辐射属性的宽,合理的参数空间上如何变化。有许多含义,例如在高UV环境中,因为外盘寿命比清除内盘的时间尺度短,我们不希望过渡光盘很常见,这似乎反映在过渡光盘群体向Orion Nebular Nebular nebular cluster的位置中。无论环境如何,我们都会发现持续的恒星形成是为了繁殖观察到的椎间盘分数,这是恒星簇年龄的函数。这项工作表明了包括内部和外部风以理解原球盘演化的重要性。

We study the evolution and final dispersal of protoplanetary discs that evolve under the action of internal and external photoevaporation, and different degrees of viscous transport. We identify five distinct dispersal pathways, which are i) very long lived discs ($>20\,$Myr), ii) inside-out dispersal where internal photoevaporation dominates and opens inner holes, iii) outside-in dispersal where external photoevaporation dominates through disc truncation and two intermediate regimes characterised by lingering material in the inner disc with the outer disc dispersed predominantly by either internal or external photoevaporation. We determine how the lifetime, relative impact of internal and external winds and clearing pathway varies over a wide, plausible, parameter space of stellar/disc/radiation properties. There are a number of implications, for example in high UV environments because the outer disc lifetime is shorter than the time-scale for clearing the inner disc we do not expect transition discs to be common, which appears to be reflected in the location of transition disc populations towards the Orion Nebular Cluster. Irrespective of environment, we find that ongoing star formation is required to reproduce observed disc fractions as a function of stellar cluster age. This work demonstrates the importance of including both internal and external winds for understanding protoplanetary disc evolution.

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