Neutrinoless double beta decay in the left-right symmetric models for linear seesaw
arXiv:1512.01119 · doi:10.1007/JHEP09(2016)152
Abstract
In a class of left-right symmetric models for linear seesaw, a neutrinoless double beta decay induced by the left- and right-handed charged currents together will only depend on the breaking details of left-right and electroweak symmetries. This neutrinoless double beta decay can reach the experimental sensitivities if the right-handed charged gauge boson is below the 100 TeV scale.
5 pages, 1 figure, 1 table, minor revision with more references
References in corpus (5)
- Limit on Neutrinoless ββ Decay of Xe-136 from the First Phase of KamLAND-Zen and Comparison with the Positive Claim in Ge-76
- Left-Right Symmetry: from LHC to Neutrinoless Double Beta Decay
- The GERDA experiment for the search of 0νββ decay in ^{76}Ge
- The Scalar Triplet Contribution to Lepton Flavour Violation and Neutrinoless Double Beta Decay in Left-Right Symmetric Model
- Left-right models with light neutrino mass prediction and dominant neutrinoless double beta decay rate
Cited by in corpus (6)
- Left-right symmetry and leading contributions to neutrinoless double beta decay
- Half-life Expectations for Neutrinoless Double Beta Decay in Standard and Non-Standard Scenarios
- Neutrinoless double beta decay and lepton flavour violation in broken symmetric neutrino mass models
- Lepton Number Violation, Lepton Flavour Violation and Baryogenesis in Left-Right Symmetric Model
- Neutrinoless double beta decay in minimal left-right symmetric model with universal seesaw
- Effect of large light-heavy neutrino mixing and natural type-II seesaw dominance to lepton flavor violation and neutrinoless double beta decay