论文标题
机械反馈对原始黑洞积聚的影响
Mechanical feedback effects on primordial black hole accretion
论文作者
论文摘要
在辐射主导的时代,暗物质可能至少部分组成是形成的原始黑洞。积聚在原始黑洞上产生的辐射在高红移时,氢重组之前和之后在培养基的性质上留下了特征性特征。因此,需要对这些对象上的积聚建模才能在其丰度上获得强大的约束。我们研究了机械反馈的影响,即流出(风和/或喷气机)对介质,原始黑洞积聚的影响,从而对相关的辐射产生影响。使用分析和数值计算,我们首次研究流出是否可以降低具有类似于Ligo-Virgo协作所检测到的质量的原始黑洞的吸积率。尽管增生速度演变的复杂性,但机械反馈能够显着降低原始黑洞积聚率,至少在流出与紧凑型物体的运动对齐时,至少通过数量级。如果流出垂直于运动方向,则效果不太重要,但仍然不可忽略。原始黑洞的流出,即使是较弱的孔,也可以显着降低吸积率,有效地削弱了这些物体上的丰度限制。我们的结果激发了进一步的数值模拟,以更现实的设置,这将产生更精确的定量预测。
Dark matter may consist, at least partially, of primordial black holes formed during the radiation-dominated era. The radiation produced by accretion onto primordial black holes leaves characteristic signatures on the properties of the medium at high redshift, before and after Hydrogen recombination. Therefore, reliable modelling of accretion onto these objects is required to obtain robust constraints on their abundance. We investigate the effect of mechanical feedback, i.e. the impact of outflows (winds and/or jets) on the medium, on primordial black hole accretion, and thereby on the associated radiation. Using analytical and numerical calculations, we study for the first time whether outflows can reduce the accretion rate of primordial black holes with masses similar to those detected by the LIGO-Virgo collaboration. Despite the complexity of the accretion rate evolution, mechanical feedback is able to significantly reduce the primordial black hole accretion rate, at least by an order of magnitude, when outflows are aligned with the motion of the compact object. If the outflow is perpendicular to the direction of motion, the effect is less important but still non-negligible. Outflows from primordial black holes, even rather weak ones, can significantly decrease the accretion rate, effectively weakening abundance constraints on these objects. Our results motivate further numerical simulations with a more realistic setup, which would yield more precise quantitative predictions.