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首页> 外文期刊>The Astrophysical journal >EFFICIENT MERGER OF BINARY SUPERMASSIVE BLACK HOLES IN NONAXISYMMETRIC GALAXIES
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EFFICIENT MERGER OF BINARY SUPERMASSIVE BLACK HOLES IN NONAXISYMMETRIC GALAXIES

机译:非对称星系中二元超大量黑洞的有效合并

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摘要

Binary supermassive black holes (SBHs) form naturally in galaxy mergers, but their long-term evolution is uncertain. In spherical galaxies, N-body simulations show that binary evolution stalls at separations much too large for significant emission of gravitational waves (the "final-parsec problem"). Here we follow the long-term evolution of a massive binary in more realistic, triaxial and rotating galaxy models with particle numbers as high as 10~6. We find that the binary does not stall. The binary hardening rates that we observe are sufficient to allow complete coalescence of binary SBHs in 10 Gyr or less, even in the absence of collisional loss-cone refilling or gasdynamical torques, thus providing a potential solution to the final-parsec problem.
机译:在星系合并中自然会形成二元超大质量黑洞(SBH),但它们的长期发展尚不确定。在球状星系中,N体模拟表明,二元演化停滞在距离太远而无法显着释放引力波的间隔中(“最终视差问题”)。在这里,我们遵循大数位双星在更现实,三轴和旋转星系模型中的长期演化,其粒子数高达10〜6。我们发现二进制文件不会停止。我们观察到的二元硬化速率足以使二元SBH在10 Gyr或更短的时间内完全聚结,即使在没有碰撞损失圆锥体重新填充或气体动力扭矩的情况下,也为最终的帕拉塞问题提供了可能的解决方案。

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