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SEARCH FOR SUPERMASSIVE BLACK HOLE BINARIES IN THE SLOAN DIGITAL SKY SURVEY SPECTROSCOPIC SAMPLE

机译:在斯隆数字天空调查光谱样本中寻找超大量的黑洞双星

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Supermassive black hole (SMBH) binaries are expected in a ΛCDM cosmology given that most (if not all) massive galaxies contain a massive black hole (BH) at their center. So far, however, direct evidence for such binaries has been elusive. We use cross-correlation to search for temporal velocity shifts in the Mg II broad emission lines of 0.36 z 2 quasars with multiple observations in the Sloan Digital Sky Survey. For ~109 M ☉ BHs in SMBH binaries, we are sensitive to velocity drifts for binary separations of ~0.1?pc with orbital periods of ~100?yr. We find seven candidate sub-parsec-scale binaries with velocity shifts 3.4σ ~ 280?km?s–1, where σ is our systematic error. Comparing the detectability of SMBH binaries with the number of candidates (N ≤?7), we can rule out that most 109 M ☉ BHs exist in ~0.03-0.2?pc scale binaries, in a scenario where binaries stall at sub-parsec scales for a Hubble time. We further constrain that ≤16% (one-third) of quasars host SMBH binaries after considering gas-assisted sub-parsec evolution of SMBH binaries, although this result is very sensitive to the assumed size of the broad line region. We estimate the detectability of SMBH binaries with ongoing or next-generation surveys (e.g., Baryon Oscillation Spectroscopic Survey, Subaru Prime Focus Spectrograph), taking into account the evolution of the sub-parsec binary in circumbinary gas disks. These future observations will provide longer time baselines for searches similar to ours and may in turn constrain the evolutionary scenarios of SMBH binaries.
机译:鉴于大多数(如果不是全部)大质量星系在其中心都包含大质量黑洞(BH),因此在CDM宇宙学中有望获得超大质量黑洞(SMBH)双星。但是,到目前为止,此类二进制文件的直接证据还难以捉摸。我们使用互相关来搜索Sloan Digital Sky Survey中具有多个观测值的0.36 3.4σ〜280?km?s–1,其中σ是我们的系统误差。将SMBH二进制文件的可检测性与候选数目(N≤?7)进行比较,我们可以排除在大约0.03-0.2?pc规模的二进制文件中存在大多数109 M☉BH的情况,其中二进制文件停滞在亚秒级尺度哈勃的时间。在考虑了气体辅助的SMBH二元次方差的演化之后,我们进一步约束了≤16%(三分之一)的类星体容纳SMBH二元,尽管该结果对粗线区域的假定大小非常敏感。考虑到环流气盘中次帕斯二值二进制的演变,我们通过正在进行的或下一代调查(例如,重子振荡光谱调查,斯巴鲁Prime Focus光谱仪)估算SMBH二值的可检测性。这些未来的观察结果将为与我们类似的搜索提供更长的时间基准,并反过来可能会限制SMBH二进制文件的进化方案。

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