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首页> 外文期刊>The Astrophysical journal >On the Power to Constrain the Accretion History of Massive Black Holes via Spin Measurements by Upcoming X-Ray Telescopes
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On the Power to Constrain the Accretion History of Massive Black Holes via Spin Measurements by Upcoming X-Ray Telescopes

机译:在即将到来的X射线望远镜通过旋转测量来限制大规模黑洞的积极历史的动力

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摘要

The spin distribution of massive black holes (MBHs) contains rich information on their assembly history. However, only limited information can be extracted from currently available spin measurements of MBHs owing to the small sample size and large measurement uncertainties. Upcoming X-ray telescopes with improved spectral resolution and larger effective area are expected to provide new insights into the growth history of MBHs. Here we investigate, at a proof of concept level, how stringent constraints can be placed on the accretion history of MBHs by the spin measurements from future X-ray missions. We assume a toy model consisting of a two-phase accretion history composed of an initial coherent phase with a constant disk orientation, followed by a chaotic phase with random disk orientations in each accretion episode. By utilizing mock spin data generated from such models and performing Bayesian Markov Chain Monte Carlo simulations, we find that most accretion models of MBHs can be reconstructed provided that MBH spins are measured with an accuracy of . We also quantify the precision of the reconstructed parameters by adopting various combinations of sample sizes and spin accuracies, and find that the sample size is more crucial to model reconstruction once the spin accuracy reaches ~0.1. To some extent, a better spin accuracy will compensate for a small sample size and vice versa. Future X-ray missions such as the Advanced Telescope for High Energy Astrophysics and the enhanced X-ray Timing and Polarimetry mission, may provide spin measurements of ?100 MBHs with an uncertainty of ~0.04–0.1 and will thus put strong constraints on the MBH growth history.
机译:大规模黑洞(MBHS)的旋转分布包含有关其装配历史的丰富信息。然而,由于小样本大小和大的测量不确定因素,可以仅从当前可用的MBHS自旋测量中提取有限的信息。即将推出具有改进的频谱分辨率和更大的有效面积的X射线望远镜,可以为MBHS的生长历史提供新的见解。在这里,我们在概念级别的证据上调查,通过未来X射线任务的旋转测量,可以将严格的约束对MBHS的积累历史进行严格的限制。我们假设由具有恒定磁盘取向的初始相干阶段组成的两相的积极历史,然后在每个增值集中的随机磁盘取向组成的两相积累历史。通过利用这些模型产生的模拟自旋数据并执行贝叶斯马尔可夫链蒙特卡罗模拟,我们发现可以重建MBHS的大多数增值模型,条件是按精度测量MBH旋转。我们还通过采用样本尺寸和旋转精度的各种组合来量化重建参数的精度,并发现样品大小对模型重建一旦旋转精度达到〜0.1,就更为重要。在一定程度上,更好的自旋准确度将补偿小的样本大小,反之亦然。未来的X射线任务,如高能量天体物理学和增强型X射线定时和偏振特派团的先进望远镜,可以提供旋转测量值的旋转测量值100 MBH,其不确定度为〜0.04-0.1,因此将对MBH进行强大的限制增长史。

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