论文标题

原星磁盘中气体和固体的结构化分布

Structured Distributions of Gas and Solids in Protoplanetary Disks

论文作者

Bae, Jaehan, Isella, Andrea, Zhu, Zhaohuan, Martin, Rebecca, Okuzumi, Satoshi, Suriano, Scott

论文摘要

最近对原月球磁盘的空间分辨观察结果显示,有很多子结构,包括同心环和间隙,内部空腔,未对准,螺旋臂和方位角不对称。这是原星磁盘研究的主要突破,因为原恒星和行星VI,正在重塑行星形成领域。但是,尽管原动性磁盘中成像子结构的能力一直在稳步改善,但许多子结构的起源仍在很大程度上是有争议的。原活力磁盘中气体和固体的结构化分布可能反映了工作中物理过程的结果,包括行星的形成。然而,例如,观察到的原球磁盘种群之间的各种特性,例如,尘埃分布中环和间隙的数量和径向位置表明,磁盘和/或结果之间的控制过程可能会差异对恒星或磁盘的敏感。在这篇综述中,我们(1)总结了从文献中收集的原始磁盘子结构的现有观察结果; (2)对提出的各种过程进行了全面的理论综述,以解释观察到的原星盘子结构; (3)将当前的理论预测与现有观察结果进行比较,并强调未来的研究方向以区分不同的起源; (4)讨论最先进的原星磁盘观测到对原星磁盘和行星形成理论的含义。

Recent spatially-resolved observations of protoplanetary disks revealed a plethora of substructures, including concentric rings and gaps, inner cavities, misalignments, spiral arms, and azimuthal asymmetries. This is the major breakthrough in studies of protoplanetary disks since Protostars and Planets VI and is reshaping the field of planet formation. However, while the capability of imaging substructures in protoplanetary disks has been steadily improving, the origin of many substructures are still largely debated. The structured distributions of gas and solids in protoplanetary disks likely reflect the outcome of physical processes at work, including the formation of planets. Yet, the diverse properties among the observed protoplanetary disk population, for example, the number and radial location of rings and gaps in the dust distribution, suggest that the controlling process may differ between disks and/or the outcome may be sensitive to stellar or disk properties. In this review, we (1) summarize the existing observations of protoplanetary disk substructures collected from the literature; (2) provide a comprehensive theoretical review of various processes proposed to explain observed protoplanetary disk substructures; (3) compare current theoretical predictions with existing observations and highlight future research directions to distinguish between different origins; and (4) discuss implications of state-of-the-art protoplanetary disk observations to protoplanetary disk and planet formation theory.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源