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BULGE-DRIVEN FUELING OF SEED BLACK HOLES

机译:种子驱动的种子黑洞膨胀

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We examine radiation-regulated accretion onto intermediate-mass and massive black holes (BHs) embedded in a bulge component. Using spherically symmetric one-dimensional radiation-hydrodynamics simulations, we track the growth of BHs accreting from a cold, neutral gas reservoir with temperature K. We find that the accretion rate of BHs embedded in bulges is proportional to , where rB,eff is the increased effective Bondi radius that includes the gravitational potential of the bulge, and rB is the Bondi radius of the BH. The radiative feedback from the BH suppresses the cold accretion rate to ~1% of the Bondi rate when a bulge is not considered. However, we find that the BH fueling rate increases rapidly when the bulge mass Mbulge is greater than the critical value of ~106 M☉ and is proportional to , where is the BH mass. Since the critical bulge mass is independent of the central BH mass, the growth rate of BHs with masses , 104, and 106 M☉ exhibits distinct dependencies on the bulge-to-BH mass ratio. Our results imply that light seed BHs (102 M☉), which might be the remnants of the Pop?III stars, cannot grow through accretion coevally with the early assembly of the bulge of the host galaxies until the bulge reaches the critical mass. However, massive BH seeds (105 M☉), which may form via direct collapse, are more likely to be embedded in a supercritical bulge, and thus can grow efficiently coupling to the host galaxies and driving the early evolution of the MBH–σ relationship.
机译:我们研究了嵌入凸起部分的中间质量块和大质量黑洞(BH)的辐射调节积聚。使用球形对称的一维辐射-流体动力学模拟,我们跟踪了温度为K的冷中性气藏中BHs积聚的增长。我们发现,嵌入凸起中的BHs积聚率与rB,eff是增加的有效邦迪半径,包括凸起的重力,rB是BH的邦迪半径。当不考虑凸起时,BH的辐射反馈将冷积率抑制为邦迪率的〜1%。但是,我们发现,当凸起质量Mbulge大于临界值〜106M☉时,BH的加油速度迅速增加,并且与BH质量成正比。由于临界隆起质量与中心BH质量无关,所以质量为104和106 M B的BHs的生长速率对隆起与BH质量之比表现出明显的依赖性。我们的结果表明,可能是Pop?III恒星残留的轻种子BHs(102M☉)不能随着宿主星系隆起的早期组装而明显地通过吸积而生长,直到隆起达到临界质量为止。但是,可能通过直接坍塌形成的大量BH种子(105M☉)更有可能嵌入超临界凸起中,因此可以与宿主星系有效地生长并推动MBH-σ关系的早期演化。 。

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