Neutrinos secretly converting to lighter particles to please both KATRIN and the cosmos
arXiv:1510.02201 · doi:10.1088/1475-7516/2016/02/058
Abstract
Within the framework of the Standard Model of particle physics and standard cosmology, observations of the Cosmic Microwave Background (CMB) and Baryon Acoustic Oscillations (BAO) set stringent bounds on the sum of the masses of neutrinos. If these bounds are satisfied, the upcoming KATRIN experiment which is designed to probe neutrino mass down to eV will observe only a null signal. We show that the bounds can be relaxed by introducing new interactions for the massive active neutrinos, making neutrino masses in the range observable by KATRIN compatible with cosmological bounds. Within this scenario, neutrinos convert to new stable light particles by resonant production of intermediate states around a temperature of keV in the early Universe, leading to a much less pronounced suppression of density fluctuations compared to the standard model.
13 pages, 2 figures
References in corpus (5)
- The Clustering of the SDSS DR7 Main Galaxy Sample I: A 4 per cent Distance Measure at z=0.15
- Updated fit to three neutrino mixing: status of leptonic CP violation
- Sensitivity of Next-Generation Tritium Beta-Decay Experiments for keV-Scale Sterile Neutrinos
- Cosmology with self-interacting sterile neutrinos and dark matter - A pseudoscalar model
- Revising Limits on Neutrino-Majoron Couplings
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