Neutrino Magnetic Moments Meet Precision Measurements
arXiv:2211.04669 · doi:10.1007/JHEP02(2023)085
Abstract
In the early universe, Dirac neutrino magnetic moments due to their chirality-flipping nature could lead to thermal production of right-handed neutrinos, which would make a significant contribution to the effective neutrino number, . We present in this paper a dedicated computation of the neutrino chirality-flipping rate in the thermal plasma. With a careful and consistent treatment of soft scattering and the plasmon effect in finite temperature field theories, we find that neutrino magnetic moments above have been excluded by current CMB and BBN measurements of , assuming flavor-universal and diagonal magnetic moments for all three generation of neutrinos. This limit is stronger than the latest bounds from XENONnT and LUX-ZEPLIN experiments, and comparable with those from stellar cooling considerations.
23 pages, 6 figures, 2 tables. An appendix added to demonstrate the consistency with early results
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