Superheavy dark matter from the natural inflation in light of the highest-energy astroparticle events
arXiv:2504.15272 · doi:10.1088/1475-7516/2025/10/109
Abstract
Superheavy dark matter has been attractive as a candidate of particle dark matter. We propose a ``natural" particle model, in which the dark matter serves as the inflaton in natural inflation, while decaying to high-energy particles at energies of from the prediction of the inflation. A scalar field responsible for diluting the dark matter abundance revives the natural inflation either with or without the recent data from the Atacama Cosmology Telescope (ACT) and baryon acoustic oscillation results from Dark Energy Spectroscopic Instrument. Since the dark matter must be a spin-zero scalar, we carefully study the galactic dark matter 3-body decay into fermions and two body decays into a gluon pair, and point out relevant multi-messenger bounds that constrain these decay modes. Interestingly, the predicted energy scale may coincide with the AMATERASU event and/or the KM3NeT neutrino event, KM3-230213A. We also point out particle models with dark baryon to further alleviate -ray bounds. This scenario yields several testable predictions for the UHECR observations, including the highest-energy neutrons that are unaffected by magnetic fields, the tensor-to-scalar ratio, the running of spectral indices, , and the existence of light new colored particles that could be accessible at future collider experiments. Further measurements of high-energy cosmic rays, including their components and detailed directions, may provide insight into not only the origin of the cosmic rays but also inflation.
37 pages, 5 figures
References in corpus (37)
- DESI 2024 VI: Cosmological Constraints from the Measurements of Baryon Acoustic Oscillations
- BICEP / Keck XIII: Improved Constraints on Primordial Gravitational Waves using Planck, WMAP, and BICEP/Keck Observations through the 2018 Observing Season
- The IceCube high-energy starting event sample: Description and flux characterization with 7.5 years of data
- The Milky Way total mass profile as inferred from Gaia DR2
- MeV-scale reheating temperature and thermalization of oscillating neutrinos by radiative and hadronic decays of massive particles
- Trans-Planckian Censorship and the Swampland
- Improved Characterization of the Astrophysical Muon-Neutrino Flux with 9.5 Years of IceCube Data
- Mirror particles and mirror matter: 50 years of speculation and search
- Detection of a particle shower at the Glashow resonance with IceCube
- Neutrino Constraints on the Dark Matter Total Annihilation Cross Section
- Features of the energy spectrum of cosmic rays above eV using the Pierre Auger Observatory
- Dark Matter Spectra from the Electroweak to the Planck Scale
- Constraining Very Heavy Dark Matter Using Diffuse Backgrounds of Neutrinos and Cascaded Gamma Rays
- Post--Sphaleron Baryogenesis
- Detection of the Keplerian decline in the Milky Way rotation curve
- Model-independent dark matter annihilation bound from the diffuse gamma ray flux
- An extremely energetic cosmic ray observed by a surface detector array
- Multi-Natural Inflation in Supergravity and BICEP2
- Multi-Natural Inflation in Supergravity
- KASCADE-Grande Limits on the Isotropic Diffuse Gamma-Ray Flux between 100 TeV and 1 EeV
- Trans-Planckian censorship and other swampland bothers addressed in warm inflation
- Superheavy scalar dark matter from gravitational particle production in -attractor models of inflation
- Probing heavy dark matter decays with multi-messenger astrophysical data
- Trans-Planckian wimpzillas
- A search for photons with energies above eV using hybrid data from the low-energy extensions of the Pierre Auger Observatory
- Axion monodromy inflation with multi-natural modulations
- Search for Extremely-High-Energy Neutrinos and First Constraints on the Ultrahigh-Energy Cosmic-Ray Proton Fraction with IceCube
- Revisiting ultrahigh-energy constraints on decaying super-heavy dark matter
- Boosted Neutrinos and Relativistic Dark Particles as Messengers from Reheating
- Super heavy dark matter origin of the PeV neutrino event: KM3-230213A
- The Spectrum of Dark Radiation as a Probe of Reheating
- Direct baryogenesis in the broken phase
- High Energy Sphalerons for Baryogenesis at Low Temperatures
- Dark sectors in neutron-shining-through-a-wall and nuclear absorption signals
- Probing superheavy dark matter through lunar radio observations of ultrahigh-energy neutrinos and the impacts of neutrino cascades
- Shining ALP Dark Radiation
- The past and future 20-years endeavor for discovering origins of ultra-high energy cosmic rays -- Rapporteur's summary of cosmic ray indirect --
Cited by in corpus (5)
- Cosmogenic Origin of KM3-230213A: Delayed Gamma-Ray Emission from A Cosmic-Ray Transient
- LHAASO Galactic Plane -rays Strongly Constrain Heavy Dark Matter
- Exploring ultra-high energy neutrino experiments through the lens of the transport equation
- Linking the KM3-230213A Neutrino Event to Dark Matter Decay and Gravitational Wave signals
- Beyond the Local Void: A data-driven search for the origins of the Amaterasu particle