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首页> 外文期刊>The Astrophysical journal >RESOLVING THE FORMATION OF PROTOGALAXIES. II. CENTRAL GRAVITATIONAL COLLAPSE
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RESOLVING THE FORMATION OF PROTOGALAXIES. II. CENTRAL GRAVITATIONAL COLLAPSE

机译:解决原星系的形成。二。中央重力塌陷

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Numerous cosmological hydrodynamic studies have addressed the formation of galaxies. Here we choose to study the first stages of galaxy formation, including nonequilibrium atomic primordial gas cooling, gravity, and hydrodynamics. Using initial conditions appropriate for the concordance cosmological model of structure formation, we perform two adaptive mesh refinement simulations of ~10~8 M_☉ galaxies at high redshift. The calculations resolve the Jeans length at all times with more than 16 cells and capture over 14 orders of magnitude in length scales. In both cases, the dense, 10~5 solar mass, one parsec central regions are found to contract rapidly and have turbulent Mach numbers up to 4. Despite the ever decreasing Jeans length of the isothermal gas, we only find one site of fragmentation during the collapse. However, rotational secular bar instabilities transport angular momentum outward in the central parsec as the gas continues to collapse and lead to multiple nested unstable fragments with decreasing masses down to sub-Jupiter mass scales. Although these numerical experiments neglect star formation and feedback, they clearly highlight the physics of turbulence in gravitationally collapsing gas. The angular momentum segregation seen in our calculations plays an important role in theories that form supermassive black holes from gaseous collapse.
机译:大量的宇宙流体力学研究已经解决了星系的形成。在这里,我们选择研究星系形成的第一阶段,包括非平衡原子原始气体冷却,重力和流体动力学。使用适合结构形成的协调宇宙学模型的初始条件,我们在高红移条件下对〜10〜8M_☉星系进行了两个自适应网格细化模拟。该计算可始终解析超过16个单元的Jeans长度,并捕获超过14个数量级的长度尺度。在这两种情况下,都发现密集的太阳质量为10〜5的1秒差距中心区域迅速收缩,湍流马赫数高达4。崩溃。但是,随着气体的继续坍塌,旋转的世俗的条形不稳定性将中心动量向外传送角动量,并导致多个嵌套的不稳定碎片,其质量下降到亚木星质量以下。尽管这些数值实验忽略了恒星的形成和反馈,但它们清楚地说明了重力塌陷气体中湍流的物理性质。在我们的计算中看到的角动量偏析在由气体坍塌形成超大质量黑洞的理论中起着重要作用。

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