Cosmological implications of the KOTO excess
arXiv:2006.05064 · doi:10.1103/PhysRevD.102.083527
Abstract
The KOTO experiment has reported an excess of events above the Standard Model prediction, in tension with the Grossman-Nir (GN) bound. The GN bound heavily constrains new physics interpretations of an excess in this channel, but another possibility is that the observed events originate from a different process entirely: a decay of the form , where denotes one or more new invisible species. We introduce a class of models to study this scenario with two light scalars playing the role of , and we examine the possibility that the lighter of the two new states may also account for cosmological dark matter (DM). We show that this species can be produced thermally in the presence of additional interactions apart from those needed to account for the KOTO excess. Conversely, in the minimal version of the model, DM must be produced nonthermally. In this case, avoiding overproduction imposes constraints on the structure of the low-energy theory. Moreover, this requirement carries significant implications for the scale of reheating in the early Universe, generically preferring a low but observationally permitted reheating temperature of O(10 MeV). We discuss astrophysical and terrestrial signatures that will allow further tests of this paradigm in the coming years.
43 pages, 10 figures. Matched published version
References in corpus (14)
- Two-Loop Electroweak Corrections for the K -> pi nu anti-nu Decays
- Neutral Kaon Mixing Beyond the Standard Model with Chiral Fermions Part 1: Bare Matrix Elements and Physical Results
- Light Scalars and the KOTO Anomaly
- Loophole in K --> pi nu nubar Search and New Weak Leptonic Forces
- Dark sector origin of the KOTO and MiniBooNE anomalies
- Search for invisible decays of and : A probe of new physics and tests using the Bell-Steinberger relation
- A little theory of everything, with heavy neutral leptons
- A Light Scalar Explanation of and the KOTO Anomaly
- Light gauge boson interpretation for and the anomaly at the J-PARC KOTO experiment
- MeV-scale reheating temperature and cosmological production of light sterile neutrinos
- Pair production of dark particles in meson decays
- Three Exceptions to the Grossman-Nir Bound
- Breaking the Grossman-Nir Bound in Kaon Decays
- Imprint of a new light particle at KOTO?