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首页> 外文期刊>The Astrophysical journal >WEAKLY INTERACTING MASSIVE PARTICLE DARK MATTER AND FIRST STARS: SUPPRESSION OF FRAGMENTATION IN PRIMORDIAL STAR FORMATION
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WEAKLY INTERACTING MASSIVE PARTICLE DARK MATTER AND FIRST STARS: SUPPRESSION OF FRAGMENTATION IN PRIMORDIAL STAR FORMATION

机译:弱相互作用的大颗粒暗物质和第一颗恒星:主星形成中碎片的抑制

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We present the first three-dimensional simulations to include the effects of dark matter annihilation feedback during the collapse of primordial minihalos. We begin our simulations from cosmological initial conditions and account for dark matter annihilation in our treatment of the chemical and thermal evolution of the gas. The dark matter is modeled using an analytical density profile that responds to changes in the peak gas density. We find that the gas can collapse to high densities despite the additional energy input from the dark matter. No objects supported purely by dark matter annihilation heating are formed in our simulations. However, we find that dark matter annihilation heating has a large effect on the evolution of the gas following the formation of the first protostar. Previous simulations without dark matter annihilation found that protostellar disks around Population III stars rapidly fragmented, forming multiple protostars that underwent mergers or ejections. When dark matter annihilation is included, however, these disks become stable to radii of 1000?AU or more. In the cases where fragmentation does occur, it is a wide binary that is formed.
机译:我们提出了第一个三维模拟,其中包括原始微型光晕崩溃期间暗物质an灭反馈的影响。我们从宇宙学的初始条件开始进行模拟,并在处理气体的化学和热演化过程中考虑了暗物质的ni灭。使用响应峰值气体密度变化的分析密度曲线对暗物质进行建模。我们发现,尽管暗物质有额外的能量输入,但气体仍可能坍塌至高密度。在我们的模拟中,没有形成仅由暗物质an灭加热支撑的物体。然而,我们发现暗物质an灭加热对第一颗原恒星形成后气体的逸出有很大影响。以前没有暗物质ni灭的模拟发现,人口III恒星周围的原恒星盘迅速破碎,形成了多颗经历合并或弹射的原星。但是,当包括暗物质an灭时,这些磁盘对1000?AU或更大的半径变得稳定。在确实发生碎片的情况下,会形成一个宽二进制文件。

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