Planck-suppressed corrections to the T-violating neutrino asymmetry are computed through a full high-energy-to-low-energy pipeline and found to lie between 3e-8 and 3e-7, far below DUNE's sensitivity.
Less suppressed mu-e-gamma and tau-mu-gamma loop amplitudes and extra dimension theories
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abstract
When mu-e-gamma (or tau-mu-gamma) loop involves a vector boson, the amplitude is suppressed by more than two powers of heavy particle masses. However we show that the scalar boson loop diagrams are much less damped. Particularly, the loop amplitude in which the intermediate fermion and scalar boson have comparable masses is as large as possible, as allowed by the decoupling theorem. Such a situation is realized in the "universal extra dimension theory", and can yield a large enough rate to be detectable in current experiments. Our investigation involves precise calculation of the scalar boson loop's dependence on the masses of the intermediate states.
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Ultraviolet Flavor Transmission to T-Violating Neutrino Oscillation Observables in a Seesaw Framework with Sterile Mixing and Planck-Suppressed Corrections
Planck-suppressed corrections to the T-violating neutrino asymmetry are computed through a full high-energy-to-low-energy pipeline and found to lie between 3e-8 and 3e-7, far below DUNE's sensitivity.