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

Journal Article · · Physical Review. D.

The discrepancy between the values of the Hubble constant H0 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 H0 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 H0 posterior as a function of fifth force strength. We consider well-studied 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 H0 tension in many scenarios, around the sensitivity level at which tests based on other distance ladder data can constrain this strength. Here, 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 H0 tension are possible, supplementing those already known in the prerecombination era.

Research Organization:
Univ. of Pennsylvania, Philadelphia, PA (United States)
Sponsoring Organization:
USDOE Office of Science (SC)
Grant/Contract Number:
SC0007901
OSTI ID:
1610996
Alternate ID(s):
OSTI ID: 1559085
Journal Information:
Physical Review. D., Vol. 100, Issue 4; ISSN 2470-0010
Publisher:
American Physical Society (APS)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 77 works
Citation information provided by
Web of Science

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Converting non-relativistic dark matter to radiation text January 2018
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Fifth force constraints from galaxy warps text January 2018
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Cosmological discordances. III. More on measure properties, large-scale-structure constraints, the Hubble constant and Planck data journal December 2019
Nonminimal dark sector physics and cosmological tensions journal March 2020
Cosmic Expansion History from Line-Intensity Mapping journal December 2019
Early Dark Energy from Massive Neutrinos as a Natural Resolution of the Hubble Tension journal April 2020
The BAO+BBN take on the Hubble tension journal October 2019
The Cosmic Expansion History from Line-Intensity Mapping text January 2019
Cosmological discordances III: more on measure properties, Large-Scale-Structure constraints, the Hubble constant and Planck text January 2019
Non-minimal dark sector physics and cosmological tensions text January 2019
Can the quasi-molecular mechanism of recombination decrease the Hubble tension? journal May 2021
Soundness of dark energy properties journal July 2020
No H 0 assistance from assisted quintessence journal May 2021
Trouble beyond H 0 and the new cosmic triangles journal May 2021
Weighing massive neutron star with screening gravity: a look on PSR J0740 + 6620 and GW190814 secondary component journal December 2020
Cosmology Intertwined II: The Hubble Constant Tension text January 2020
The galaxy power spectrum take on spatial curvature and cosmic concordance text January 2020
A structured analysis of Hubble tension preprint January 2021

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