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Astrophysical tests of gravity beyond General Relativity.

机译:超越广义相对论的引力天文学测试。

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摘要

The General theory of Relativity (GR) brought gravity into accord with the principles of locality and relativity. Since its discovery it has been preeminent, recognized as the most accurate description of gravity on the many scales where it has been tested. During this period, seemingly radical predictions like the existence of black holes and the expansion of the Universe have been verified and testify to the great leap of insight that GR represented in our understanding of space and time. However not all precision observations of astrophysical systems have yielded easily to interpretation within GR, and with the discovery of cosmic acceleration, there is genuine concern that General Relativity may be incomplete when describing the Universe on the largest sizes imaginable.;In this uncertainty, many theoretical models have been proposed. In this thesis we shall first outline the motivation behind a certain subset of these models and the known issues that arise in interpreting these models as alternative theories of gravity. Then focus on one variety of theory the ƒ( R) modifications to gravity. Demonstrating that many of the known instabilities have a common origin and that they are avoided when treating these theories via perturbative constraints.;In the second part of this work we examine the astrophysical impact of modifications to gravity, first in the case of high mass neutron stars, then subsequently on corrections to the line profile of neutral hydrogen from violations of the equivalence principle. Finally we explore the phenomenology of modifications to gravity that produce late-Universe acceleration. In particular, what solutions are allowed and what range of accelerations are predicted as a result. Furthermore we explore how a correction to gravity at large scales would impact the growth and evolution of cosmological perturbations.
机译:广义相对论(GR)使引力符合局部性和相对性原理。自发现以来,它一直是卓越的,被公认为是在许多测试过的地方对重力的最准确描述。在此期间,看似激进的预言(如黑洞的存在和宇宙的膨胀)得到了验证,并证明了GR在我们对空间和时间的理解中所代表的见解的巨大飞跃。但是,并非所有天文学系统的精确观测都容易在GR中解释,并且随着宇宙加速的发现,真正关注的是广义相对论在描述可想象的最大尺寸的宇宙时可能是不完整的;在这种不确定性下,许多已经提出了理论模型。在本文中,我们将首先概述这些模型的某些子集背后的动机,以及在将这些模型解释为重力的替代理论时出现的已知问题。然后集中讨论ƒ(R)对重力的修正的多种理论。证明了许多已知的不稳定性具有共同的起源,并且在通过扰动约束处理这些理论时避免了这些不稳定性。在本工作的第二部分中,我们研究了重力改变对天体物理的影响,首先是大质量中子恒星,然后根据对等原理的违反对中性氢的线轮廓进行校正。最后,我们探索了产生晚宇宙加速的重力修正现象。尤其是,允许使用什么解决方案,以及可以预测出哪些加速度范围。此外,我们探索了对重力的大规模校正将如何影响宇宙扰动的增长和演化。

著录项

  • 作者

    Cooney, Alan.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Astrophysics.;Physics General.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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