论文标题

部分可观测时空混沌系统的无模型预测

Setting the Stage for Planet Formation: Measurements and Implications of the Fundamental Disk Properties

论文作者

Miotello, A., Kamp, I., Birnstiel, T., Cleeves, L. I., Kataoka, A.

论文摘要

行星形成的领域是在一个令人兴奋的时代,最近观察到了低至中间质量恒星周围的磁盘,由最先进的干涉仪和高对比度的光学和IR设施制成,揭示了各种各样的子结构,有些可能与行星相关。因此,重要的是要了解原球网构件的物理和化学性质及其空间分布,以更好地理解行星的形成。自PPVI以来,该领域的观察能力已经有了很大的改善,可以对大型磁盘样本进行调查和对一些明亮磁盘的高分辨率成像研究。但是,数据质量和样本量的改善已经为有关磁盘的质量预算,其空间分布及其径向范围等属性开辟了许多基本问题。此外,已经对磁盘的垂直结构进行了更详细的研究,并通过空间解决的观测值进行了详细研究,从而提供了有关垂直分层和温度分层的新见解,但也引起了有关其他特性的问题,例如材料运输和粘度。这些特性中的每一个 - 磁盘质量,表面密度分布,外半径,垂直范围,温度结构和运输 - 均具有基本的兴趣,因为它们集体为磁盘演化和相应的行星形成理论奠定了基础。在本章中,我们将回顾我们对磁盘的基本属性的理解,包括相关的观察技术,以探测其性质,建模方法和各自的警告。最后,我们讨论了磁盘进化论和行星形成理论的含义,突显了以后的新问题,因为我们的观察设施得到了改善。

The field of planet formation is in an exciting era, where recent observations of disks around low- to intermediate-mass stars made with state of the art interferometers and high-contrast optical and IR facilities have revealed a diversity of substructures, some possibly planet-related. It is therefore important to understand the physical and chemical nature of the protoplanetary building blocks, as well as their spatial distribution, to better understand planet formation. Since PPVI, the field has seen tremendous improvements in observational capabilities, enabling both surveys of large samples of disks and high resolution imaging studies of a few bright disks. Improvements in data quality and sample size have, however, opened up many fundamental questions about properties such as the mass budget of disks, its spatial distribution, and its radial extent. Moreover, the vertical structure of disks has been studied in greater detail with spatially resolved observations, providing new insights on vertical layering and temperature stratification, yet also bringing rise to questions about other properties, such as material transport and viscosity. Each one of these properties - disk mass, surface density distribution, outer radius, vertical extent, temperature structure, and transport - is of fundamental interest as they collectively set the stage for disk evolution and corresponding planet formation theories. In this chapter, we will review our understanding of the fundamental properties of disks including the relevant observational techniques to probe their nature, modelling methods, and the respective caveats. Finally, we discuss the implications for theories of disk evolution and planet formation underlining what new questions have since arisen as our observational facilities have improved.

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