English

Light scalars in neutron star mergers

High Energy Physics - Phenomenology 2022-01-12 v2 High Energy Astrophysical Phenomena Nuclear Theory

Abstract

Due to their unique set of multimessenger signals, neutron star mergers have emerged as a novel environment for studies of new physics beyond the Standard Model (SM). As a case study, we consider the simplest extension of the SM scalar sector involving a light CP-even scalar singlet SS mixing with the SM Higgs boson. These SS particles can be produced abundantly in neutron star mergers via the nucleon bremsstrahlung process. We show that the SS particles may either be trapped in or stream freely out of the merger remnant, depending on the SS mass, its mixing with the SM Higgs boson, and the temperature and baryon density in the merger. In the free-streaming region, the scalar SS will provide an extra channel to cool down the merger remnant, with cooling timescales as small as O{\cal O}(ms). On the other hand, in the trapped region, the Bose gas of SS particles could contribute a larger thermal conductivity than the trapped neutrinos in some parts of the parameter space, thus leading to faster thermal equilibration than expected. Therefore, future observations of the early postmerger phase of a neutron star merger could effectively probe a unique range of the SS parameter space, largely complementary to the existing and future laboratory and supernova limits. In view of these results, we hope the merger simulation community will be motivated to implement the effects of light CP-even scalars into their simulations in both the free-streaming and trapped regimes.

Cite

@article{arxiv.2111.05852,
  title  = {Light scalars in neutron star mergers},
  author = {P. S. Bhupal Dev and Jean-François Fortin and Steven P. Harris and Kuver Sinha and Yongchao Zhang},
  journal= {arXiv preprint arXiv:2111.05852},
  year   = {2022}
}

Comments

44 pages, 10 figures v2: Matches version to be published in JCAP. Added a discussion of the Boltzmann suppression of the emissivity (fig 5) that occurs for scalar particles with m_S >> T. Added some material on the role of pions

R2 v1 2026-06-24T07:34:08.066Z