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The Direct Collapse of Supermassive Black Hole Seeds

机译:超大分离的黑洞种子的直接崩溃

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The direct collapse model of supermassive black hole seed formation requires that the gas cools predominantly via atomic hydrogen. To this end we simulate the effect of an anisotropic radiation source on the collapse of a halo at high redshift. The radiation source is placed at a distance of 3 kpc (physical) from the collapsing object and is set to emit monochromatically in the center of the Lyman- Werner (LW) band. The LW radiation emitted from the high redshift source is followed self-consistently using ray tracing techniques. Due to self-shielding, a small amount of H2 is able to form at the very center of the collapsing halo even under very strong LW radiation. Furthermore, we find that a radiation source, emitting> 10~(54)(~ 10~3 J21) photons per second is required to cause the collapse of a clump of M~ 10~5 M⊙. The resulting accretion rate onto the collapsing object is~ 0.25 M⊙ yr~(-1). Our results display significant differences, compared to the isotropic radiation field case, in terms of H2 fraction at an equivalent radius. These differences will significantly effect the dynamics of the collapse. With the inclusion of a strong anisotropic radiation source, the final mass of the collapsing object is found to be M~ 10~5 M⊙. This is consistent with predictions for the formation of a supermassive star or quasi-star leading to a supermassive black hole.
机译:超大性黑洞种子形成的直接折叠模型要求气体主要通过原子氢冷却。为此,我们模拟了各向异性辐射源对高射频下光晕坍塌的影响。辐射源放置在折叠物体的3kpc(物理)的距离处,并且被设置为在Lyman-Werner(LW)频带的中心中单色发射。使用光线跟踪技术遵循从高红移源发出的LW辐射。由于自屏,即使在非常强的LW辐射下,少量的H2也能够在坍塌的光环的中心处形成。此外,我们发现辐射源,发光> 10〜(54)(〜10〜3J21),需要导致丛的块为m〜10〜5m³。所得到的折叠物体上的增生率为约0.25m³yr〜(-1)。我们的结果显示出与各向同性辐射场壳体相比的显着差异,就同等半径的H2分数而言。这些差异将显着影响崩溃的动态。为了包含强的各向异性辐射源,发现塌陷物​​体的最终质量为M〜10〜5m³。这与用于形成超迹象的预测或导致超大迹象的黑洞的预测。

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