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A Triple Origin for the Heavy and Low-spin Binary Black Holes Detected by LIGO/VIRGO

机译:LIGO / VIRGO检测到的重旋和低旋双黑洞的三重原点

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We explore the masses, merger rates, eccentricities, and spins for field binary black holes (BHs) driven to merger by a third companion through the Lidov–Kozai mechanism. Using a population synthesis approach, we model the creation of stellar-mass BH triples across a range of different initial conditions and stellar metallicities. We find that the production of triple-mediated mergers is enhanced at low metallicities by a factor of ~100 due to the lower BH natal kicks and reduced stellar mass loss. These triples naturally yield heavy binary BHs with near-zero effective spins, consistent with most of the mergers observed to date. This process produces a merger rate of between 2 and 25 Gpc?3 yr?1 in the local universe, suggesting that the Lidov–Kozai mechanism can potentially explain all of the low-spin, heavy BH mergers observed by Advanced LIGO/Virgo. Finally, we show that triples admit a unique eccentricity and spin distribution that will allow this model to be tested in the near future.
机译:我们研究了野外二进制黑洞(BH)的质量,合并率,离心率和自旋,这些二进制黑洞是由第三同伴通过Lidov–Kozai机制驱动合并的。使用总体合成方法,我们模拟了在一系列不同的初始条件和恒星金属性条件下恒星质量BH三元组的创建。我们发现,由于较低的BH出生踢和降低的恒星质量损失,在低金属含量下,三重介导的合并的产量提高了约100倍。这些三元组自然产生具有接近零的有效自旋的沉重的二进制BH,这与迄今为止观察到的大多数合并一致。这个过程在当地宇宙中产生了2到25 Gpc?3 yr?1之间的合并率,这表明Lidov-Kozai机制可以潜在地解释Advanced LIGO / Virgo观察到的所有低旋转,重度BH合并。最后,我们证明三元组具有独特的偏心率和自旋分布,这将允许在不久的将来对该模型进行测试。

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