论文标题

原始黑洞暗物质和Ligo/处女座观测

Primordial Black Hole Dark Matter and the LIGO/Virgo observations

论文作者

Jedamzik, Karsten

论文摘要

Ligo/处女座的合作现在已经通过重力辐射的发射来检测到十个黑洞二进制的合并。这些黑洞在宇宙QCD时期内形成并构成了所有宇宙暗物质的假设,被许多作者拒绝了,许多作者认为,除其他约束,原始黑洞(PBH)暗物质将导致比率更大的合并率。我们重新审视当前PBH合并率的计算。太阳能PBHS在相当高的红移中形成簇,在较低的红移下蒸发。我们详细考虑了由于两个PBH二进制成员与第三次通过完整数值集成,这是由于两个PBH二进制成员与第三次通过PBH的三体相互作用而导致的二进制属性的演变。蒙特卡洛分析表明,由于这种相互作用,以前预测的合并率通过数量级降低。在QCD时期形成的PBH暗物质的自然预测产生了一个明显的峰值,约100万美元_ {\ odot} $,肩膀上的一小部分pbhs左右约3000万美元_ {\ odot} $,由QCD epoch期间状态良好的状态等式所决定。我们采用这一事实来对$ \ sim 30m _ {\ odot} $ pbh二进制文件的合并率进行初步预测,并发现它非常接近Ligo/Wirgo确定的合并。此外,我们表明当前的Ligo/处女座限制了$ \ sim m _ {\ odot} $ binaries的存在不排除QCD PBHS来构成所有宇宙暗物质。从随机引力背景,预聚类积聚或矮星系对QCD PBHS的限制都不构成问题。 QCD PBHS的微透镜约束应重新研究。但是,我们警告说,在这个数字上具有挑战性的问题中,某些可能的相关效果无法得到处理。

The LIGO/Virgo collaboration have by now detected the mergers of ten black hole binaries via the emission of gravitational radiation. The hypothesis that these black holes have formed during the cosmic QCD epoch and make up all of the cosmic dark matter, has been rejected by many authors reasoning that, among other constraints, primordial black hole (PBH) dark matter would lead to orders of magnitude larger merger rates than observed. We revisit the calculation of the present PBH merger rate. Solar mass PBHs form clusters at fairly high redshifts, which evaporate at lower redshifts. We consider in detail the evolution of binary properties in such clusters due to three-body interactions between the two PBH binary members and a third by-passing PBH, for the first time, by full numerical integration. A Monte-Carlo analysis shows that formerly predicted merger rates are reduced by orders of magnitude due to such interactions. The natural prediction of PBH dark matter formed during the QCD epoch yields a pronounced peak around $1M_{\odot}$ with a small mass fraction of PBHs on a shoulder around $30M_{\odot}$, dictated by the well-determined equation of state during the QCD epoch. We employ this fact to make a tentative prediction of the merger rate of $\sim 30M_{\odot}$ PBH binaries, and find it very close to that determined by LIGO/Virgo. Furthermore we show that current LIGO/Virgo limits on the existence of $\sim M_{\odot}$ binaries do not exclude QCD PBHs to make up all of the cosmic dark matter. Neither do constraints on QCD PBHs from the stochastic gravitational background, pre-recombination accretion, or dwarf galaxies pose a problem. Microlensing constraints on QCD PBHs should be re-investigated. We caution, however, in this numerically challenging problem some possibly relevant effects could not be treated.

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