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Black hole masses in active galactic nuclei.

机译:活跃的银河核中的黑洞团块。

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摘要

We present the complete results from two, high sampling-rate, multi-month, spectrophotometric reverberation mapping campaigns undertaken to obtain either new or improved Hbeta reverberation lag measurements for several relatively low-luminosity active galactic nuclei (AGNs). We have reliably measured the time delay between variations in the continuum and Hbeta emission line in seven local Seyfert 1 galaxies. These measurements are used to calculate the mass of the supermassive black hole at the center of each of these AGNs. We place our results in context to the most current calibration of the broad-line region (BLR) RBLR-L relationship, where our results remove many outliers and significantly reduce the scatter at the low-luminosity end of this relationship.;A detailed analysis of the data from our high sampling rate, multi-month reverberation mapping campaign in 2007 reveals that the Hbeta emission region within the BLRs of several nearby AGNs exhibit a variety of kinematic behaviors. Through a velocity-resolved reverberation analysis of the broad Hbeta emission-line flux variations in our sample, we reconstruct velocity-resolved kinematic signals for our entire sample and clearly see evidence for outflowing, infalling, and virialized BLR gas motions in NGC 3227, NGC 3516, and NGC 5548, respectively.;Finally, we explore the nature of systematic errors that can arise in measurements of black hole masses from single-epoch spectra of AGNs by utilizing the many epochs available for NGC 5548 and PG1229+204 from reverberation mapping databases. In particular, we examine systematics due to AGN variability, contamination due to constant spectral components (i.e., narrow lines and host galaxy flux), data quality (i.e., signal-to-noise ratio, S/N), and blending of spectral features. We investigate the effect that each of these systematics has on the precision and accuracy of single-epoch masses calculated from two commonly-used line-width measures by comparing these results to recent reverberation mapping studies. We then present an error budget which summarizes the minimum observable uncertainties as well as the amount of additional scatter and/or systematic offset that can be expected from the individual sources of error investigated.
机译:我们提供了两个高采样率,数月的分光光度混响作图运动的完整结果,这些运动是为几个相对低发光度的活跃银河核(AGN)获得新的或改进的Hbeta混响滞后测量结果。我们已经可靠地测量了七个本地塞弗特1星系的连续谱和Hbeta发射谱线之间的时间延迟。这些测量值用于计算每个AGN中心的超大质量黑洞的质量。我们将结果放在最新对宽线区域(BLR)RBLR-L关系的校准的背景下,其中我们的结果消除了许多离群值并显着减少了这种关系的低发光度端的散射。 2007年我们的高采样率,数月的混响测绘活动得出的数据显示,附近几个AGN的BLR内的Hbeta发射区域表现出多种运动学行为。通过对样本中广泛的Hbeta发射线通量变化进行速度分辨混响分析,我们为整个样本重建了速度分辨运动学信号,并清楚地看到了NGC 3227,NGC中有BLR气体流出,下落和虚拟化的证据最后,我们利用混响映射中NGC 5548和PG1229 + 204的许多可用时间,探索了从AGNs单周期频谱测量黑洞质量时可能出现的系统误差的性质。数据库。特别是,我们检查了由于AGN变异性引起的系统性,由于恒定的光谱成分(即窄线和宿主星系通量)导致的污染,数据质量(即信噪比,S / N)以及光谱特征的混合。通过将这些结果与最近的混响映射研究进行比较,我们调查了这些系统中的每个系统对单周期质量的精度和准确性的影响,该质量由两种常用的线宽度量计算得出。然后,我们提供一个误差预算,该误差概要总结了可观察到的最小不确定性,以及可以从所研究的各个误差源中预期得到的其他散射和/或系统偏移量。

著录项

  • 作者

    Denney, Kelly D.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Physics Astrophysics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 282 p.
  • 总页数 282
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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