论文标题
由剧烈的引力动力学的长寿命螺旋臂形成磁盘
Formation of disks with long-lived spiral arms from violent gravitational dynamics
论文作者
论文摘要
通过简单的动力学实验,我们研究了引力和气体动力学在最初平衡,均匀和旋转的巨大密度过度思想中的进化中的综合作用。系统平均场电势的快速变化使得颗粒(PPS)仅通过牛顿重力相互作用,形成了一个排序厚的厚度圆盘,这些圆盘由旋转运动占主导地位,旋转运动被远平衡的螺旋臂所包围。另一方面,气体成分受到压缩冲击和辐射冷却的影响,以形成一个更平坦的磁盘,其中旋转运动是相干的,并且速度分散体小于PPS。在这种气态磁盘周围长期寿命但非平稳的螺旋臂形式:这些是由气态颗粒制成的,这些颗粒是连贯移动的,因为在重力塌陷阶段已经获得了特定的相位相关性。这种相位相关性代表了武器的暴力起源的签名,并意味着物质运动和能量的传递。在较大的尺度上,径向速度分量明显大于旋转速度,气体遵循PPS追踪的相同平衡的螺旋臂。我们最终概述了结果的天体物理和宇宙学含义。
By means of simple dynamical experiments we study the combined effect of gravitational and gas dynamics in the evolution of an initially out-of-equilibrium, uniform and rotating massive over-density thought of as in isolation. The rapid variation of the system mean-field potential makes the point like particles (PPs), which interact only via Newtonian gravity, form a quasistationary thick disk dominated by rotational motions surrounded by far out-of-equilibrium spiral arms. On the other side, the gas component is subjected to compression shocks and radiative cooling so as to develop a much flatter disk, where rotational motions are coherent and the velocity dispersion is smaller than that of PPs. Around such gaseous disk long-lived, but nonstationary, spiral arms form: these are made of gaseous particles that move coherently because have acquired a specific phase-space correlation during the gravitational collapse phase. Such a phase-space correlation represents a signature of the violent origin of the arms and implies both the motion of matter and the transfer of energy. On larger scales, where the radial velocity component is significantly larger than the rotational one, the gas follows the same out-of-equilibrium spiral arms traced by PPs. We finally outline the astrophysical and cosmological implications of our results.