Constraining self-interacting ultrahigh-energy muon neutrinos by cosmic microwave background spectral distortion
arXiv:2506.24110 · doi:10.1103/jsf2-krmq
Abstract
The neutrino telescopes have firmly established the existence of ultrahigh-energy neutrinos. Observations of these neutrinos offer a unique probe of neutrino self-interactions. This work investigates how the self-interacting neutrinos, mediated by scalar bosons, inject energy into the medium through radiative scattering with the cosmic neutrino background, leaving an imprint on the cosmic microwave background (CMB) spectrum. The energy injection into plasma in redshift ranges, and , leads to -type and -type CMB spectral distortions, respectively. Using observational constraints from Cosmic Background Explorer/Far Infrared Absolute Spectrophotometer (COBE/FIRAS) and projected sensitivities from Primordial Inflation Explorer (PIXIE) experiments for -type and -type CMB distortions, we derive the stringent upper bounds on the self-interaction coupling strength as a function of mediator mass for neutrino interactions. We focus on flavor-specific self-interaction related to muon neutrinos and sub-GeV mass mediators (). We find the upper bound on the self-interaction coupling strength to be for the muon neutrino, considering ultrahigh-energy muon neutrino energy to be 1 PeV and PIXIE projected upper bounds on -type CMB spectral distortion. The bound remains constant till the mediator mass reaches the center-of-mass energy, and after that, it gets relaxed and becomes proportional to the mediator mass. We have also compared our results with existing bounds in the literature. Our findings indicate that CMB spectral distortion could play a decisive role in exploring neutrino physics beyond the standard model of particle physics, and future missions like PIXIE can provide valuable insights.
14 pages, 6 figures. Updated to match the published version
References in corpus (23)
- Measurement of the Positive Muon Anomalous Magnetic Moment to 0.46 ppm
- Massive neutrinos and cosmology
- Observation of high-energy neutrinos from the Galactic plane
- Interacting neutrinos in cosmology: exact description and constraints
- IceCube PeV-EeV Neutrinos and Secret Interactions of Neutrinos
- Beyond y and μ: the shape of the CMB spectral distortions in the intermediate epoch, 1.5x10^4 < z < 2x10^5
- Updated constraints on massive neutrino self-interactions from cosmology in light of the tension
- Inflation meets neutrinos
- Strong Supernova 1987A Constraints on Bosons Decaying to Neutrinos
- Probing Secret Interactions of Astrophysical Neutrinos in the High-Statistics Era
- Neutrino Mass and New Physics
- Large Neutrino Secret Interactions, Small Impact on Supernovae
- Towards Powerful Probes of Neutrino Self-Interactions in Supernovae
- Systematically Testing Singlet Models for
- Supernova Emission of Secretly Interacting Neutrino Fluid: Theoretical Foundations
- Probing decaying heavy dark matter with the 4-year IceCube HESE data
- High-energy cosmic neutrinos as a probe of the vector mediator scenario in light of the muon anomaly and Hubble tension
- New Searches for Muonphilic Particles at Proton Beam Dump Spectrometers
- Synergy Between Hubble Tension Motivated Self-Interacting Neutrino and KeV-Sterile Neutrino Dark Matter
- Probing self-interacting ultrahigh-energy neutrinos with the cosmic 21-cm signal
- Multi-messenger connection in high-energy neutrino astronomy
- Multimessenger Astronomy with Neutrinos
- Revisiting constraints on primordial magnetic fields from spectral distortions of cosmic microwave background