论文标题
暗物质光环对气体弹出的反应:尖齿II
The Response of Dark Matter Haloes to Gas Ejection: CuspCore II
论文作者
论文摘要
我们提出了一个分析模型cuspcore II,以使暗物质(DM)光环对中央气体射出的响应,这是一种在矮人和高Z大型星系中产生DM缺陷核的机制。我们使用理想化的N体模拟测试了该模型和其他三种方法。当前模型具有物理上的合理性,并提供了比早期版本cuspcore I(Freundlich等,2020)的更准确的预测。尖齿模型假定电势的瞬时变化,然后放松对新的牛仔裤平衡。在第一个轨道时期,放松是剧烈的放松,然后是相混合。通过以〜10%的精度或更高的速度来重现模拟的DM轮廓,通过迭代地追踪能量扩散DE = DU(R)。一种基于绝热不变的方法显示出适度的质量变化的相似精度,但低估了强烈气体弹出的DM扩展。基于DM和总质量比之间简单的经验关系的方法使预测略有下降。副孔I中使用的粗略假设,用于包含固定DM质量的壳的能源保护,结果低估了DM响应,可以通过引入另一种“能量”定义来部分修复。我们的模型正在概括以解决恒星和DM多组分系统在DM缺陷星系的形成中的差异响应。
We propose an analytic model, CuspCore II, for the response of dark matter (DM) haloes to central gas ejection, as a mechanism for generating DM-deficient cores in dwarfs and high-z massive galaxies. We test this model and three other methods using idealized N-body simulations. The current model is physically justified and provides more accurate predictions than the earlier version, CuspCore I (Freundlich et al. 2020). The CuspCore model assumes an instantaneous change of potential, followed by a relaxation to a new Jeans equilibrium. The relaxation turns out to be violent relaxation during the first orbital period, followed by phase mixing. By tracing the energy diffusion dE=dU(r) iteratively, the model reproduces the simulated DM profiles with ~10% accuracy or better. A method based on adiabatic invariants shows similar precision for moderate mass change but underestimates the DM expansion for strong gas ejection. A method based on a simple empirical relation between DM and total mass ratios makes slightly inferior predictions. The crude assumption used in CuspCore I, of energy conservation for shells that encompass a fixed DM mass, turns out to underestimate the DM response, which can be partially remedied by introducing an alternative "energy" definition. Our model is being generalized to address the differential response of a multi-component system of stars and DM in the formation of DM-deficient galaxies.