A cosmic microwave background search for fine-structure constant evolution

Fuente: arXiv
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Main Authors: Tohfa, Hurum Maksora, Crump, Jack, Baker, Ethan, Hart, Luke, Grin, Daniel, Brosius, Madeline, Chluba, Jens
Format: Preprint
Published: 2023
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author Tohfa, Hurum Maksora
Crump, Jack
Baker, Ethan
Hart, Luke
Grin, Daniel
Brosius, Madeline
Chluba, Jens
author_facet Tohfa, Hurum Maksora
Crump, Jack
Baker, Ethan
Hart, Luke
Grin, Daniel
Brosius, Madeline
Chluba, Jens
contents In some extensions of the standard model of particle physics, the values of the fundamental coupling constants vary in space and time. Some observations of quasars hint at time and spatial variation of the fine structure constant $α$. Here, the Bekenstein-Sandvik-Barrow-Magueijo (BSBM) model (which posits the existence of a scalar field driving evolution in the fundamental electric charge $e$) is tested against quasar and Planck satellite cosmic microwave background (CMB) data. In this model, variations in $e$ are coupled to the matter density through a factor $ζ_{\rm m}/ω$, which is related to electromagnetic contributions to nucleon masses, and {the energy} scale of new physics. Simulations conducted here do not support claims that the electrostatic contribution to $ζ_{m}$ is completely shielded. Other common approximations used in BSBM field evolution are found to be adequate. Principal components of the CMB data with respect to variations in $α$ are used to obtain constraints of $ζ_{\rm m}/ω\lesssim 9.3 \times 10^{-9}$ for a massless field. A forecast anticipating the promise of the Simons Observatory (SO) CMB experiment shows that SO will be sensitive to values of $ζ_{\rm m}/ω\geq 2.2 \times 10^{-9}$.
format Preprint
id arxiv_https___arxiv_org_abs_2307_06768
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A cosmic microwave background search for fine-structure constant evolution
Tohfa, Hurum Maksora
Crump, Jack
Baker, Ethan
Hart, Luke
Grin, Daniel
Brosius, Madeline
Chluba, Jens
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
High Energy Physics - Phenomenology
In some extensions of the standard model of particle physics, the values of the fundamental coupling constants vary in space and time. Some observations of quasars hint at time and spatial variation of the fine structure constant $α$. Here, the Bekenstein-Sandvik-Barrow-Magueijo (BSBM) model (which posits the existence of a scalar field driving evolution in the fundamental electric charge $e$) is tested against quasar and Planck satellite cosmic microwave background (CMB) data. In this model, variations in $e$ are coupled to the matter density through a factor $ζ_{\rm m}/ω$, which is related to electromagnetic contributions to nucleon masses, and {the energy} scale of new physics. Simulations conducted here do not support claims that the electrostatic contribution to $ζ_{m}$ is completely shielded. Other common approximations used in BSBM field evolution are found to be adequate. Principal components of the CMB data with respect to variations in $α$ are used to obtain constraints of $ζ_{\rm m}/ω\lesssim 9.3 \times 10^{-9}$ for a massless field. A forecast anticipating the promise of the Simons Observatory (SO) CMB experiment shows that SO will be sensitive to values of $ζ_{\rm m}/ω\geq 2.2 \times 10^{-9}$.
title A cosmic microwave background search for fine-structure constant evolution
topic Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2307.06768