Tuning the violins: dark sector phase transition models for the PTA signal

Fuente: arXiv
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Main Authors: Bringmann, Torsten, Konstandin, Thomas, Matuszak, Jonas, Schmidt-Hoberg, Kai, Tasillo, Carlo
Format: Preprint
Published: 2026
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author Bringmann, Torsten
Konstandin, Thomas
Matuszak, Jonas
Schmidt-Hoberg, Kai
Tasillo, Carlo
author_facet Bringmann, Torsten
Konstandin, Thomas
Matuszak, Jonas
Schmidt-Hoberg, Kai
Tasillo, Carlo
contents First-order phase transitions in a dark sector have been invoked as an intriguing possibility to explain the observed stochastic gravitational wave background at nanohertz frequencies. Here we perform a comprehensive study of the generic requirements for such a phase transition to explain the observed signal while being consistent with all relevant constraints. We consider three broad model classes for strong first-order transitions, realised by an Abelian dark Higgs boson, a two-step phase transition involving two scalar singlets, and a conformal scalar field with loop-induced symmetry breaking, respectively. We discuss the tuning that is required to successfully explain the Pulsar Timing Array (PTA) signal in each of these cases, and highlight the underlying physical mechanisms. We conclude that all three scenarios can in principle describe the data, but that conformal models stand out as the most generic, and least tuned, explanation. Future observations by the PTA collaborations and collider experiments will be crucial to test the viability of this hypothesis, and to further narrow in on the model parameters, if the PTA signal is indeed due to a strong first-order phase transition.
format Preprint
id arxiv_https___arxiv_org_abs_2602_09092
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Tuning the violins: dark sector phase transition models for the PTA signal
Bringmann, Torsten
Konstandin, Thomas
Matuszak, Jonas
Schmidt-Hoberg, Kai
Tasillo, Carlo
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
First-order phase transitions in a dark sector have been invoked as an intriguing possibility to explain the observed stochastic gravitational wave background at nanohertz frequencies. Here we perform a comprehensive study of the generic requirements for such a phase transition to explain the observed signal while being consistent with all relevant constraints. We consider three broad model classes for strong first-order transitions, realised by an Abelian dark Higgs boson, a two-step phase transition involving two scalar singlets, and a conformal scalar field with loop-induced symmetry breaking, respectively. We discuss the tuning that is required to successfully explain the Pulsar Timing Array (PTA) signal in each of these cases, and highlight the underlying physical mechanisms. We conclude that all three scenarios can in principle describe the data, but that conformal models stand out as the most generic, and least tuned, explanation. Future observations by the PTA collaborations and collider experiments will be crucial to test the viability of this hypothesis, and to further narrow in on the model parameters, if the PTA signal is indeed due to a strong first-order phase transition.
title Tuning the violins: dark sector phase transition models for the PTA signal
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2602.09092