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Binary Dynamics, Black Holes, and Inflationary Perturbations: Applications in General Relativity and Field Theory.

机译:二元动力学,黑洞和通货膨胀微扰:在广义相对论和场论中的应用。

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摘要

General Relativity is the standard framework by which all gravitational systems are analyzed in modern research, and it provides the theme for all the investigations in this thesis. Beyond this common platform, very different gravitating problems are examined here, and several analytical approaches are used to investigate these systems. Effective field theory, a methodological approach prominent in quantum field theory, plays an important role in the analysis of two of the problems in this thesis. In the first instance, an effective field theory for bound gravitational states is used to compute the interaction Lagrangian of a binary system at the second post-Newtonian order. A metric parametrization based on a temporal Kaluza-Klein decomposition is also used. In this effective field theory calculation, the post-Newtonian results for the equations of motion are elegantly reproduced. In the next problem considered, effective field theory is used to investigate the thermodynamics of compactified charged black holes. The relevant thermodynamic quantities are all computed to second order in the perturbation parameter and finite size effects are incorporated through higher order worldline operators. Complete agreement is found with an exact extremal black hole solution constructed with traditional General Relativistic methods. The results indicate that the addition of charge to a compactified black hole may delay the phase transition to a black string. Finally, the third problem examined here concerns the evolution of perturbations at the end of early universe inflation. General Relativity enters this problem through cosmological perturbation theory. It is shown that the coherent oscillations in the inflaton break down at the comoving post-inflationary horizon size, about 14 e-folds after the end of inflation. This is many e-folds before any known constraints, leading to possible implications for the matching problem of inflation, and the generation of stochastic gravitational waves in the post-inflationary universe.
机译:广义相对论是现代研究中所有引力系统进行分析的标准框架,它为本文的所有研究提供了主题。除了这个通用平台之外,这里还讨论了非常不同的引人入胜的问题,并且使用了几种分析方法来研究这些系统。有效场论是量子场论中的一种重要的方法论方法,在分析本文的两个问题中起着重要的作用。在第一种情况下,使用有效的场理论来约束重力状态,以计算二元后牛顿阶下二元系统的相互作用拉格朗日数。还使用基于时间Kaluza-Klein分解的度量参数化。在这种有效的场论计算中,运动方程的后牛顿结果得到了很好的再现。在考虑的下一个问题中,有效场论用于研究压实的带电黑洞的热力学。在扰动参数中,所有相关的热力学量均被计算为二阶,并且通过高阶世界线算子将有限尺寸效应纳入其中。通过使用传统的相对论方法构造的精确的极端黑洞解决方案,可以找到完全一致的结果。结果表明,向致密化的黑洞中添加电荷可能会延迟向黑弦的相变。最后,这里讨论的第三个问题是宇宙早期通货膨胀结束时扰动的演变。广义相对论通过宇宙扰动理论进入了这个问题。结果表明,在充气结束后,充气中的相干振荡在共同移动的充气后水平范围内分解,约为14倍。在任何已知的约束条件之前,这是许多电子折叠,从而导致通货膨胀的匹配问题以及通货膨胀后宇宙中随机引力波的产生。

著录项

  • 作者

    Gilmore, James Brian.;

  • 作者单位

    Yale University.;

  • 授予单位 Yale University.;
  • 学科 Physics Astrophysics.;Physics Elementary Particles and High Energy.;Physics Theory.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:56

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