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To the horizon and beyond: Weak lensing of the CMB and binary inspirals into horizonless objects.

机译:到达地平线和更远的地方:CMB和二元吸气镜向无地平线物体发出的光线不足。

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摘要

This thesis examines two predictions of general relativity: weak lensing and gravitational waves. The cosmic microwave background (CMB) is gravitationally lensed by the large-scale structure between the observer and the last-scattering surface. This weak lensing induces non-Gaussian correlations that can be used to construct estimators for the deflection field. The error and bias of these estimators are derived and used to analyze the viability of lensing reconstruction for future CMB experiments.; Weak lensing also affects the one-point probability distribution function of the CMB. The skewness and kurtosis induced by lensing and the Sunayev-Zel'dovich (SZ) effect are calculated as functions of the angular smoothing scale of the map. While these functions offer the advantage of easy computability, only the skewness from lensing-SZ correlations can potentially be detected, even in the limit of the largest amplitude fluctuations allowed by observation.; Lensing estimators are also essential to constrain inflation, the favored explanation for large-scale isotropy and the origin of primordial perturbations. B-mode polarization is considered to be a "smoking-gun" signature of inflation, and lensing estimators can be used to recover primordial B-modes from lensing-induced contamination. The ability of future CMB experiments to constrain inflation is assessed as functions of survey size and instrumental sensitivity.; A final application of lensing estimators is to constrain a possible cutoff in primordial density perturbations on near-horizon scales. The paucity of independent modes on such scales limits the statistical certainty of such a constraint. Measurements of the deflection field can be used to constrain at the 3&sgr; level the existence of a cutoff large enough to account for current CMB observations.; A final chapter of this thesis considers an independent topic: the gravitational-wave (GW) signature of a binary inspiral into a horizonless object. If the supermassive objects at galactic centers lack the horizons of traditional black holes, inspiraling objects could emit GWs after passing within their surfaces. The GWs produced by such an inspiral are calculated, revealing distinctive features potentially observable by future GW observatories.
机译:本文研究了广义相对论的两种预测:弱透镜和引力波。宇宙微波背景(CMB)由观察者和最后一个散射表面之间的大规模结构引力作用。这种弱透镜导致非高斯相关性,可用于构造偏转场的估计器。推导了这些估计量的误差和偏差,并将其用于分析透镜重建的可行性,以用于未来的CMB实验。弱镜头也会影响CMB的单点概率分布函数。由镜头引起的偏斜和峰度以及Sunayev-Zel'dovich(SZ)效应被计算为地图的角度平滑比例的函数。尽管这些功能具有易于计算的优点,但即使在观察允许的最大幅度波动范围内,也只能潜在地检测出透镜与SZ相关的偏斜。镜头估计器对于限制通货膨胀,大规模各向同性的偏爱解释和原始扰动的起源也是必不可少的。 B模式极化被认为是通货膨胀的“烟枪”信号,并且透镜估计器可用于从透镜引起的污染中恢复原始B模式。未来的CMB实验抑制通货膨胀的能力被评估为调查规模和仪器敏感性的函数。透镜估计器的最终应用是在接近水平的尺度上限制原始密度扰动的可能截止。在这样的尺度上缺乏独立模式限制了这种约束的统计确定性。偏转场的测量值可用于约束3&sgr;。衡量是否存在足以说明当前CMB观测值的临界值;本论文的最后一章考虑了一个独立的主题:将二元吸气体的引力波(GW)签名转换为无地平线物体。如果银河系中心的超质量物体缺少传统黑洞的视界,则启发性物体在其表面通过后可能会发射出GW。计算出了由这种吸气管产生的GW,揭示了未来GW观测站可能观测到的独特特征。

著录项

  • 作者

    Kesden, Michael.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

  • 入库时间 2022-08-17 11:42:31

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