Dynamical inverse seesaw mechanism as a simple benchmark for electroweak breaking and Higgs boson studies

被引:0
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作者
Sanjoy Mandal
Jorge C. Romão
Rahul Srivastava
José W. F. Valle
机构
[1] AHEP Group,Departamento de Física and CFTP, Instituto Superior Técnico
[2] Institut de Física Corpuscular — CSIC/Universitat de València,undefined
[3] Universidade de Lisboa,undefined
[4] Department of Physics,undefined
[5] Indian Institute of Science Education and Research – Bhopal,undefined
来源
Journal of High Energy Physics | / 2021卷
关键词
Beyond Standard Model; Neutrino Physics;
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摘要
The Standard Model (SM) vacuum is unstable for the measured values of the top Yukawa coupling and Higgs mass. Here we study the issue of vacuum stability when neutrino masses are generated through spontaneous low-scale lepton number violation. In the simplest dynamical inverse seesaw, the SM Higgs has two siblings: a massive CP-even scalar plus a massless Nambu-Goldstone boson, called majoron. For TeV scale breaking of lepton number, Higgs bosons can have a sizeable decay into the invisible majorons. We examine the interplay and complementarity of vacuum stability and perturbativity restrictions, with collider constraints on visible and invisible Higgs boson decay channels. This simple framework may help guiding further studies, for example, at the proposed FCC facility.
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