论文标题
通往完整的3D水力化学模拟AGB流出的途径
Route towards complete 3D hydro-chemical simulations of companion-perturbed AGB outflows
论文作者
论文摘要
在其进化的最后阶段,低和中间的质量恒星经历了巨大的质量损失,这使他们陷入了巨大而尘土飞扬的信封。尽管长期以来一直认为这种包膜通常在球形上是对称的,但最近的高分辨率观察发现,这些恒星中的大多数表现出复杂和不对称的形态,很可能是由于二元相互作用而导致的。为了提高我们对这些系统的理解,需要以数值模拟的形式进行理论研究。目前,存在一些模拟,尽管它们主要集中在流出的流体动力学上。因此,我们在这里介绍了通过讨论缺失但至关重要的物理和化学过程对伴侣扰动流出的更详细和准确建模的途径。通过这些最先进的模拟,我们旨在与观测值进行直接比较,以揭示嵌入式系统上的真实身份。
Low- and intermediate mass stars experience a significant mass loss during the last phases of their evolution, which obscures them in a vast, dusty envelope. Although it has long been thought this envelope is generally spherically symmetric in shape, recent high-resolution observations find that most of these stars exhibit complex and asymmetrical morphologies, most likely resulting from binary interaction. In order to improve our understanding about these systems, theoretical studies are needed in the form of numerical simulations. Currently, a handful of simulations exist, albeit they mainly focus on the hydrodynamics of the outflow. Hence, we here present the pathway to more detailed and accurate modelling of companion-perturbed outflows with Phantom, by discussing the missing but crucial physical and chemical processes. With these state-of-the-art simulations we aim to make a direct comparison with observations to unveil the true identity on the embedded systems.