论文标题

Sloan数字天空调查类星体中极高高速流出的调查

Survey of Extremely High-velocity Outflows in Sloan Digital Sky Survey Quasars

论文作者

Hidalgo, Paola Rodríguez, Khatri, Abdul Moiz, Hall, Patrick B., Haas, Sean, Quintero, Carla, Khatu, Viraja, Kowash, Griffin, Murray, Norm

论文摘要

我们介绍了类星体中极高的高速流出(EHVO)的调查,该调查由0.1C至0.2C之间的速度定义。参数空间的这个区域尚未包含在先前的调查中,但它可能带来理论模型的最大挑战,并且由于流出的潜在动力学能力可能是大的反馈贡献者。使用Sloan Digital Sky调查,我们发现40种具有广泛EHVO CIV吸收的类星体光谱,是先前已知病例的数量的10倍。我们表征了EHVO吸收,发现在26例CIV伴随NV和/或OVI吸收。我们发现,EHVO类星体缺乏HEII发射,并且总体上比其父样本和Balqsos的降压仪和黑洞质量更大,而我们没有发现其Eddington比率有显着差异。我们还报告了较大的黑洞质量的趋势,因为我们样品中BALQSO的流出气体的速度增加。总体较大的LBOL和EHVO类星体缺乏HEII排放表明,辐射可能正在驱动这些流出。我们发现潜在的进化效应,因为EHVO类星体在大型红移中似乎更为主导。我们估计,随着速度因子将该参数增加1-2.5个数量级,这些流出的动力可能与Balqsos的流出相似甚至大于Balqsos的流出。对EHVO类星体的进一步研究将有助于提高我们对类星体物理学的理解。

We present a survey of extremely high-velocity outflows (EHVOs) in quasars, defined by speeds between 0.1c and 0.2c. This region of the parameter space has not been included in previous surveys, but it might present the biggest challenge for theoretical models and it might be a large contributor to feedback due to the outflows' potentially large kinetic power. Using the Sloan Digital Sky Survey, we find 40 quasar spectra with broad EHVO CIV absorption, 10 times more than the number of previously known cases. We characterize the EHVO absorption and find that in 26 cases, CIV is accompanied by NV and/or OVI absorption. We find that EHVO quasars lack HeII emission and have overall larger bolometric luminosities and black hole masses than those of their parent sample and BALQSOs, while we do not find significant differences in their Eddington ratios. We also report a trend toward larger black hole masses as the velocity of the outflowing gas increases in the BALQSOs in our sample. The overall larger Lbol and lack of HeII emission of EHVO quasars suggest that radiation is likely driving these outflows. We find a potential evolutionary effect as EHVO quasars seem to be more predominant at large redshifts. We estimate that the kinetic power of these outflows may be similar to or even larger than that of the outflows from BALQSOs as the velocity factor increases this parameter by 1-2.5 orders of magnitude. Further study of EHVO quasars will help improve our understanding of quasar physics.

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