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Local resolution of the Hubble tension: The impact of screened fifth forces on the cosmic distance ladder

机译:垃圾张力的局部分辨率:筛选的第五部队对宇宙距离梯子的影响

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摘要

The discrepancy between the values of the Hubble constant H_0 derived from the local distance ladder and the cosmic microwave background provides a tantalizing hint of new physics. We explore a potential resolution involving screened fifth forces in the local Universe, which alter the Cepheid calibration of supernova distances. In particular, if the Cepheids with direct distance measurements from parallax or water masers are screened but a significant fraction of those in other galaxies are not, neglecting the difference between their underlying period-luminosity relations biases the local H_0 measurement high. This difference derives from a reduction in the Cepheid pulsation period and possible increase in luminosity under a fifth force. We quantify the internal and environmental gravitational properties of the Riess et al. distance ladder galaxies to assess their degrees of screening under a range of phenomenological models, and propagate this information into the H_0 posterior as a function of fifth force strength.We consider wellstudied screening models in scalar-tensor gravity theories such as chameleon, K-mouflage and Vainshtein, along with a recently-proposed mechanism based on baryon-dark matter interactions in which screening is governed by the local dark matter density. We find that a fifth force strength ~5%-30% that of gravity can alleviate the H_0 tension in many scenarios, around the sensitivity level at which tests based on other distance ladder data can constrain this strength. Our most successful models achieve consistency with Planck at the ~1.5σ level. Although our analysis is exploratory and based on screening models that are not necessarily realized in full theories, our results demonstrate that new physics-based local resolutions of the H_0 tension are possible, supplementing those already known in the prerecombination era.
机译:从本地距离梯子和宇宙微波背景衍生哈勃常数H_0的值之间的差异提供了新的物理的一个诱人的暗示。我们将探讨涉及本地宇宙筛选第五势力,这改变超新星距离的造父变星校准一个潜在的解决方案。特别是,如果与来自视差或水微波激射直接距离测量的造父变筛选但那些在其他星系的显著分数都没有,忽略它们的基础周光关系之间的差偏压本地H_0测量高。这种差异导出从造父脉动周期的降低和第五力的作用下可能会增加亮度。我们量化里斯等人的内部和环境引力性质。距离阶梯星系,以评估在一系列唯象模型的筛选其度,并且将此信息传播到H_0后作为第五力strength.We的函数考虑wellstudied在标量张量重力理论,如变色龙,K-mouflage筛选模型和Vainshtein,以及基于在其中筛选是由当地暗物质密度制约重子暗物质的相互作用最近提出的机制。我们发现,第五力强度〜5%-30%重力能够减轻在许多场景中的H_0张力,围绕在该基于其它距离梯子数据测试可以约束本强度的灵敏度水平的。我们最成功的车型在〜1.5σ水平实现与普朗克的一致性。虽然我们的分析是探索性的基础上筛选可不一定完全实现的理论模型,我们的研究结果表明,H_0紧张的新的基于物理学的局部分辨率是可能的,补充的prerecombination时代已经知道这些。

著录项

  • 来源
    《Physical review, D》 |2019年第1期|共20页
  • 作者单位

    Astrophysics University of Oxford Denys Wilkinson Building Keble Road Oxford OX1 3RH United Kingdom;

    Center for Particle Cosmology Department of Physics and Astronomy University of Pennsylvania 209 S. 33rd Street Philadelphia Pennsylvania 19104 USA;

    Center for Particle Cosmology Department of Physics and Astronomy University of Pennsylvania 209 S. 33rd Street Philadelphia Pennsylvania 19104 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学;场论;
  • 关键词

    Local; resolution; Hubble;

    机译:本地;决议;哈勃;

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