arXiv · hep-ph/0211368
Lepton Flavour Violation in the Constrained MSSM with Natural Neutrino Mass Hierarchy
Abstract
We present predictions for $μ\to e γ$ and $τ\to μγ$ in the CMSSM in which there is a natural hierarchy of neutrino masses resulting from the sequential dominance of three right-handed neutrinos. We perform a global analysis of this model in the $(m_0,M_{1/2})$ plane, assuming radiative electroweak symmetry breaking, and including all observed laboratory data. We confirm that a large (small) $τ\to μγ$ rate results from the dominant right-handed neutrino being the heaviest (lightest) one. We show that the $μ\to e γ$ rate may determine the order of the sub-dominant neutrino Yukawa couplings in the flavour basis, but may also be sensitive to effects beyond the leading log and leading mass insertion approximations. We also show that the $μ\to e γ$ rate is independent of $θ_{13}$, but measurement of this angle may determine a ratio of sub-dominant Yukawa couplings.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
T. Blažek, S. F. King. 2003-04-30. Lepton Flavour Violation in the Constrained MSSM with Natural Neutrino Mass Hierarchy. https://doi.org/10.1016/s0550-3213(03)00297-9
Cite the original work for its findings. Save a collection to share your selection of sources.