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Aspects of Supermassive Black Hole Growth in Nearby Active Galactic Nuclei.

机译:附近活跃的银河核超大质量黑洞生长的方面。

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摘要

Super-massive black holes (SBHs) have long been identified as the engines of active galactic nuclei (AGNs) and are now considered to play a key role in galaxy evolution. In this dissertation I present results from two observational studies conducted on nearby AGNs with the aim of furthering our understanding of SBH growth and their interplay with the host galaxies.;The first study is an observational search for SBHs spatially offset from the center of their host galaxies. Such offsets can be considered signatures of gravitational recoil following the coalescence of an SBH binary system (formed in the aftermath of a galaxy merger) due to emission of gravitational waves. The study is based on a photometric analysis of fourteen nearby elliptical galaxies observed with the Hubble Space Telescope. I find that parsec-scale offsets are common. However, while these are individually consistent with residual gravitational recoil oscillations, there is a high probability that larger offsets than those actually observed should have been found in the sample as a whole. There are a number of possible explanations for this result: the galaxy merger rate may be lower than current estimates; SBH-binaries may reach the merger stage with a configuration which minimizes recoil velocities; or the SBH oscillations are more quickly damped than predicted.;In the second study I use integral field spectroscopy obtained with the Gemini South telescope to investigate the kinematics of the circum-nuclear ionized gas in two active galaxies: NGC 1386, a Seyfert 2, and NGC 1365, a Seyfert 1. The goal of the study is to investigate outflows in low-luminosity AGNs, and the mechanisms channeling gas (the SBH fuel) from the inner kiloparsec down to a few tens of parsecs from the SBH. I find that the dominant kinematic components can be explained as a combination of rotation in the large-scale galactic disk and compact outflows along the axis of the AGN "radiation cone". However, in the case of NGC 1386, there is also compelling evidence for an equatorial outflow, which provides a new clue to the physical processes operating in AGNs.
机译:长期以来,超大质量黑洞(SBH)被认为是活跃银河核(AGN)的引擎,现在被认为在银河系演化中起关键作用。在这篇论文中,我提出了对附近AGNs进行的两项观测研究的结果,目的是加深我们对SBH生长及其与宿主星系相互作用的理解。第一项研究是对SBH在空间上偏离其宿主中心的观测研究。星系。可以将这样的偏移视为由于重力波的发射而导致的SBH二元系统(在星系合并之后形成)合并后的重力反冲的信号。这项研究基于对哈勃太空望远镜观测到的附近十四个椭圆星系的光度分析。我发现视差刻度偏移很常见。但是,尽管这些分别与残余重力反冲振荡一致,但很有可能在整个样本中都发现了比实际观察到的偏移更大的偏移。对此结果有许多可能的解释:星系合并率可能低于当前估计; SBH-binaries可能以最小化后坐速度的配置进入合并阶段。或在SBH振荡中得到比预期更快的衰减。;在第二项研究中,我使用通过Gemini South望远镜获得的积分场光谱学研究了两个活跃星系中的环核电离气体的运动学:NGC 1386,Seyfert 2 NGC 1365是Seyfert1。这项研究的目的是研究低发光AGN的流出,以及将气体(SBH燃料)从内部千帕秒降到SBH数十帕秒的机制。我发现,主要的运动学成分可以解释为大规模银河系盘中的旋转和沿AGN“辐射锥”轴的紧凑流出的组合。但是,就NGC 1386而言,也有令人信服的证据表明赤道外流,这为AGN中运行的物理过程提供了新的线索。

著录项

  • 作者

    Lena, Davide.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Astrophysics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 292 p.
  • 总页数 292
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

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