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Topics in gravitational-wave science: Macroscopic quantum mechanics and black hole physics.

机译:引力波科学主题:宏观量子力学和黑洞物理学。

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The theories of relativity and quantum mechanics, the two most important physics discoveries of the 20th century, not only revolutionized our understanding of the nature of space-time and the way matter exists and interacts, but also became the building blocks of what we currently know as modern physics. My thesis studies both subjects in great depths --- this intersection takes place in gravitational-wave physics.;The first part of this thesis (Chapter 2) concerns how to minimize the adverse effect of thermal fluctuations on the sensitivity of advanced gravitational detectors, thereby making them closer to being quantum-limited. My colleagues and I present a detailed analysis of coating thermal noise in advanced gravitational-wave detectors, which is the dominant noise source of Advanced LIGO in the middle of the detection frequency band. We identified the two elastic loss angles, clarified the different components of the coating Brownian noise, and obtained their cross spectral densities.;The second part of this thesis (Chapters 3 -- 7) concerns formulating experimental concepts and analyzing experimental results that demonstrate the quantum mechanical behavior of macroscopic objects --- as well as developing theoretical tools for analyzing quantum measurement processes. In Chapter 3, we study the open quantum dynamics of optomechanical experiments in which a single photon strongly influences the quantum state of a mechanical object. We also explain how to engineer the mechanical oscillator's quantum state by modifying the single photon's wave function.;The most promising gravitational waves for direct detection are those emitted from highly energetic astrophysical processes, sometimes involving black holes --- a type of object predicted by general relativity whose properties depend highly on the strong-field regime of the theory. Although black holes have been inferred to exist at centers of galaxies and in certain so-called X-ray binary objects, detecting gravitational waves emitted by systems containing black holes will offer a much more direct way of observing black holes, providing unprecedented details of space-time geometry in the black-holes' strong-field region.;The third part of this thesis (Chapters 8 -- 11) studies black-hole physics in connection with gravitational-wave detection.;Chapter 8 applies black hole perturbation theory to model the dynamics of a light compact object orbiting around a massive central Schwarzschild black hole. In this chapter, we present a Hamiltonian formalism in which the low-mass object and the metric perturbations of the background spacetime are jointly evolved. Chapter 9 uses WKB techniques to analyze oscillation modes (quasi-normal modes or QNMs) of spinning black holes. We obtain analytical approximations to the spectrum of the weakly-damped QNMs, with relative error O(1/L2), and connect these frequencies to geometrical features of spherical photon orbits in Kerr spacetime. Chapter 11 focuses mainly on near-extremal Kerr black holes, we discuss a bifurcation in their QNM spectra for certain ranges of (l,m) (the angular quantum numbers) as a/M → 1. With tools prepared in Chapter 9 and 10, in Chapter 11 we obtain an analytical approximate for the scalar Green function in Kerr spacetime. (Abstract shortened by UMI.).
机译:相对论和量子力学理论是20世纪两个最重要的物理学发现,不仅彻底改变了我们对时空本质以及物质存在和相互作用方式的理解,而且成为了我们目前所知的基础。作为现代物理学。我的论文对这两个主题进行了深入的研究-这种相交发生在引力波物理学中。本论文的第一部分(第2章)涉及如何最大程度地减小热波动对高级重力探测器灵敏度的不利影响,从而使它们更接近量子限制。我和我的同事们对高级重力波探测器中的涂层热噪声进行了详细分析,这是高级LIGO在检测频带中间的主要噪声源。我们确定了两个弹性损耗角,弄清了涂层布朗噪声的不同成分,并获得了它们的互谱密度。;本论文的第二部分(第3-7章)涉及制定实验概念和分析实验结果,以证明宏观物体的量子力学行为---以及开发用于分析量子测量过程的理论工具。在第3章中,我们研究光机实验的开放量子动力学,其中单个光子强烈影响机械物体的量子态。我们还解释了如何通过修改单光子的波函数来设计机械振荡器的量子态;直接检测最有希望的引力波是从高能天体物理过程发射的引力波,有时涉及黑洞-这是由黑洞预测的一种物体广义相对论,其性质在很大程度上取决于理论的强场范围。尽管已经推断出黑洞存在于星系的中心以及某些所谓的X射线二元物体中,但是检测包含黑洞的系统发出的引力波将提供更直接的观察黑洞的方式,从而提供空前的空间细节黑洞强场区域的时间几何。本论文的第三部分(第8-11章)研究了与重力波检测有关的黑洞物理学。第8章将黑洞摄动理论应用于模拟一个轻质物体绕着巨大的Schwarzschild黑洞中心运动的动力学。在本章中,我们介绍了一种哈密顿形式主义,其中低质量物体和背景时空的度量摄动共同演化。第9章使用WKB技术分析旋转的黑洞的振荡模式(准正态模式或QNM)。我们获得具有相对误差O(1 / L2)的弱阻尼QNM光谱的解析近似,并将这些频率连接到Kerr时空中的球形光子轨道的几何特征。第11章主要关注接近极端的Kerr黑洞,我们讨论了在某些范围(l,m)(角量子数)为a / M→1的QNM光谱中的分叉。使用第9章和第10章准备的工具在第11章中,我们获得了Kerr时空中标量Green函数的解析近似。 (摘要由UMI缩短。)。

著录项

  • 作者

    Yang, Huan.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Physics Theory.;Physics Quantum.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 338 p.
  • 总页数 338
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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