论文标题
无效无碰撞恒星系统的有效N体模型
Effective N-body models of composite collisionless stellar systems
论文作者
论文摘要
气体贫穷的星系可以建模为无碰撞恒星系统,具有暗物质光环和一个或多个恒星组件,代表不同的恒星种群。这种复合系统的动态演化经常通过数值N体模拟研究,其初始条件通常需要用固定星系模型的颗粒实现。我们提出了一种新的方法来构想这些N身体实现,该方法使人们充其量可以利用其演变后的无碰撞N体模拟。该方法基于复合系统的有效n体模型的使用,实际上,该模型是通过将每个粒子质量的后部分子分配给不同组件的后处理,将其解释为后验作为多组分系统的粒子系统。天体物理应用的示例是N体型模拟,旨在重现相互作用星系,卫星星系和恒星流的观察到的特性。作为一个案例研究,我们将方法应用于对银河系的重力潜力中两种组分(暗物质和恒星)卫星矮人的潮汐剥离的N体模拟。
Gas-poor galaxies can be modelled as composite collisionless stellar systems, with a dark matter halo and one or more stellar components, representing different stellar populations. The dynamical evolution of such composite systems is often studied with numerical N-body simulations, whose initial conditions typically require realizations with particles of stationary galaxy models. We present a novel method to conceive these N-body realizations, which allows one to exploit at best a collisionless N-body simulation that follows their evolution. The method is based on the use of an effective N-body model of a composite system, which is in fact realized as a one-component system of particles that is interpreted a posteriori as a multi-component system, by assigning in post-processing fractions of each particle's mass to different components. Examples of astrophysical applications are N-body simulations that aim to reproduce the observed properties of interacting galaxies, satellite galaxies and stellar streams. As a case study we apply our method to an N-body simulation of tidal stripping of a two-component (dark matter and stars) satellite dwarf galaxy orbiting in the gravitational potential of the Milky Way.