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Enhanced direct collapse due to Lyman α feedback

机译:由于Lymanα反馈而增强的直接塌陷

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We assess the impact of trapped Lyman α cooling radiation on the formation of direct collapse black holes (DCBHs). We apply a one-zone chemical and thermal evolution model, accounting for the photodetachment of H ~(?) ions, precursors to the key coolant H _(2) , by Lyman α photons produced during the collapse of a cloud of primordial gas in an atomic cooling halo at high redshift. We find that photodetachment of H ~(?) by trapped Lyman α photons may lower the level of the H _(2) -dissociating background radiation field required for DCBH formation substantially, dropping the critical flux by up to a factor of a few. This translates into a potentially large increase in the expected number density of DCBHs in the early Universe, and supports the view that DCBHs may be the seeds for the BHs residing in the centers of a significant fraction of galaxies today. We find that detachment of H ~(?) by Lyman α has the strongest impact on the critical flux for the relatively high background radiation temperatures expected to characterize the emission from young, hot stars in the early Universe. This lends support to the DCBH origin of the highest redshift quasars.
机译:我们评估了被困的莱曼α冷却辐射对直接塌陷黑洞(DCBHs)形成的影响。我们应用了一个区域化学和热演化模型,解释了在原始气体云崩解期间产生的莱曼α光子对关键冷却剂H _(2)的前体H〜(?)离子的光解。高红移时的原子冷却光晕。我们发现,被捕获的莱曼α光子对H〜(α)的光分离可能会大大降低DCBH形成所需的H _(2)-离解背景辐射场的水平,从而使临界通量下降几倍。这转化为早期宇宙中DCBH的预期数量密度可能大大增加,并支持DCBH可能是现今居住在很大比例星系中心的BH的种子。我们发现,由于相对较高的背景辐射温度(预期表征早期宇宙中年轻炽热恒星的发射特征),莱曼α脱离H〜(?)对临界通量的影响最大。这为最高的红移类星体的DCBH起源提供了支持。

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