论文标题

限制太阳星云的参数空间

Constraining the parameter space for the Solar Nebula

论文作者

Lenz, Christian T., Klahr, Hubert, Birnstiel, Tilman, Kretke, Katherine, Stammler, Sebastian

论文摘要

如果我们想了解行星的形成,那么我们拥有的唯一数据集就是我们自己的太阳系。它特别有趣,因为到目前为止,它是我们所知道的唯一发展生活的行星体系。了解太阳星云进化的条件对于了解磁盘中的不同过程以及(原始)行星之间的随后的动力相互作用至关重要。原月经磁盘提供了许多不同的参数可供探索。问题是是否可以限制此参数空间,从而允许模拟再现太阳系。行星形成的模型和观察结果对太阳星云某些区域的初始行星质量提供了约束。通过使用卵石磁通调节的行星形成,我们使用九个不同的磁盘参数进行参数研究,例如初始磁盘质量,初始磁盘尺寸,初始尘埃气(初始灰尘与气体),湍流水平等。我们发现,磁盘中质量的分布取决于行星形成时间尺度和鹅卵石的漂移时间尺度。多个磁盘参数可以影响卵石特性,从而影响地球形成。但是,仍然可以对潜在参数范围得出一些结论。卵石通量调节的行星形成似乎非常健壮,允许具有广泛参数的模拟满足太阳星云的初始行星约束。即,它不需要很多微调。

If we want to understand planetesimal formation, the only data set we have is our own Solar System. It is particularly interesting as it is so far the only planetary system we know of that developed life. Understanding the conditions under which the Solar Nebula evolved is crucial in order to understand the different processes in the disk and the subsequent dynamical interaction between (proto-)planets, once the gas disk is gone. Protoplanetary disks provide a plethora of different parameters to explore. The question is whether this parameter space can be constrained, allowing simulations to reproduce the Solar System. Models and observations of planet formation provide constraints on the initial planetesimal mass in certain regions of the Solar Nebula. By making use of pebble flux-regulated planetesimal formation, we perform a parameter study with nine different disk parameters like the initial disk mass, initial disk size, initial dust-to-gas ratio, turbulence level, and more. We find that the distribution of mass in planetesimals in the disk depends on the planetesimal formation timescale and the pebbles' drift timescale. Multiple disk parameters can influence pebble properties and thus planetesimal formation. However, it is still possible to draw some conclusions on potential parameter ranges. Pebble flux-regulated planetesimal formation seems to be very robust, allowing simulations with a wide range of parameters to meet the initial planetesimal constraints for the Solar Nebula. I.e., it does not require a lot of fine tuning.

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