TY - JOUR AU - Bonilla, C. AU - Romao, J. C. AU - Valle, J. W. F. PY - 2016 DA - 2016// TI - Electroweak breaking and neutrino mass: `invisible' Higgs decays at the LHC (type II seesaw) T2 - New J. Phys. JO - New Journal of Physics SP - 033033 EP - 21pp VL - 18 PB - Iop Publishing Ltd KW - neutrino mass KW - invisible Higgs decays KW - Higgs physics AB - Neutrino mass generation through the Higgs mechanism not only suggests the need to reconsider the physics of electroweak symmetry breaking from a new perspective, but also provides a new theoretically consistent and experimentally viable paradigm. We illustrate this by describing the main features of the electroweak symmetry breaking sector of the simplest type-II seesaw model with spontaneous breaking of lepton number. After reviewing the relevant `theoretical' and astrophysical restrictions on the Higgs sector, we perform an analysis of the sensitivities of Higgs Boson searches at the ongoing ATLAS and CMS experiments at the LHC, including not only the new contributions to the decay channels present in the standard model (SM) but also genuinely non-SM Higgs Boson decays, such as `invisible' Higgs Boson decays to majorons. We find sensitivities that are likely to be reached at the upcoming run of the experiments. SN - 1367-2630 UR - https://arxiv.org/abs/1511.07351 UR - https://doi.org/10.1088/1367-2630/18/3/033033 DO - 10.1088/1367-2630/18/3/033033 LA - English N1 - WOS:000373727500002 ID - Bonilla_etal2016 ER -