Massive Neutrinos and the Higgs Mass Window
arXiv:hep-ph/9904295 · doi:10.1103/PhysRevD.62.053005
Abstract
If neutrino masses are produced by a see-saw mechanism the Standard Model prediction for the Higgs mass window (defined by upper (perturbativity) and lower (stability) bounds) can be substantially affected. Actually the Higgs mass window can close completely, which settles an upper bound on the Majorana mass for the right-handed neutrinos, , ranging from GeV for three generations of quasi-degenerate massive neutrinos with eV, to GeV for just one relevant generation with eV. A slightly weaker upper bound on , coming from the requirement that the neutrino Yukawa couplings do not develop a Landau pole, is also discussed.
4 pages, revtex + psfig.sty, 5 figures
Cited by in corpus (67)
- Oscillating neutrinos and mu --> e, gamma
- Higgs mass implications on the stability of the electroweak vacuum
- Classically Conformal B-L extended Standard Model
- Cosmological implications of the Higgs mass measurement
- The Probable Fate of the Standard Model
- The Present and Future Status of Heavy Neutral Leptons
- Higgs boson and Top quark masses as tests of Electroweak Vacuum Stability
- Electroweak and Conformal Symmetry Breaking by a Strongly Coupled Hidden Sector
- Fits to SO(10) Grand Unified Models
- Naturalness, Vacuum Stability and Leptogenesis in the Minimal Seesaw Model
- Implications for New Physics from Fine-Tuning Arguments: I. Application to SUSY and Seesaw Cases
- The minimal scenario of leptogenesis
- A Simple Motivated Completion of the Standard Model below the Planck Scale: Axions and Right-Handed Neutrinos
- Higgs Stability and the 750 GeV Diphoton Excess
- Decay Rate of Electroweak Vacuum in the Standard Model and Beyond
- Gauge-Independent Scales Related to the Standard Model Vacuum Instability
- Phenomenology of the triplet seesaw mechanism with Gauge and Yukawa mediation of SUSY breaking
- Neutrino Masses in the Lee-Wick Standard Model
- Impact of massive neutrinos on the Higgs self-coupling and electroweak vacuum stability
- Higgs Mass Bounds, Type II SeeSaw and LHC
- Type-I Seesaw as the Common Origin of Neutrino Mass, Baryon Asymmetry, and the Electroweak Scale
- Electroweak vacuum stability in presence of singlet scalar dark matter in TeV scale seesaw models
- New constraints on Heavy Neutral Leptons from Super-Kamiokande data
- Phenomenology of Higgs bosons in the Zee-Model
- Effective operators and vacuum instability as heralds of new physics
- Vacuum Stability Constraints on the Minimal Singlet TeV Seesaw Model
- The Neutrino Option
- Higgs Boson Mass Bounds in the Standard Model with Type III and Type I Seesaw
- Neutrino Masses and Higgs Vacuum Stability
- New Fermions at the LHC and Mass of the Higgs Boson
- Gauge hierarchy from electroweak vacuum metastability
- Critical Higgs inflation in a Viable Motivated Model
- Impact of high-scale Seesaw and Leptogenesis on inflationary tensor perturbations as detectable gravitational waves
- Conformal Realization of the Neutrino Option
- Vacuum stability with spontaneous violation of lepton number
- Constraints on TeV scale Majorana neutrino phenomenology from the Vacuum Stability of the Higgs
- Assessing Perturbativity and Vacuum Stability in High-Scale Leptogenesis
- Constraining minimal Type-III Seesaw Model from naturalness, Lepton Flavor Violation and Electroweak Vacuum stability
- Electroweak Vacuum Stability and the Seesaw Mechanism Revisited
- Constraints on a seesaw model leading to quasidegenerate neutrinos and signatures at the LHC
- Examining the neutrino option
- A new scalar resonance at 750 GeV: Towards a proof of concept in favor of strongly interacting theories
- Unified Emergence of Energy Scales and Cosmic Inflation
- Low Scale Left-Right Symmetry and Naturally Small Neutrino Mass
- 125 GeV Higgs, Type III Seesaw and Gauge-Higgs Unification
- Early Universe models from Noncommutative Geometry
- Electroweak Absolute, Meta-, and Thermal Stability in Neutrino Mass Models
- Constraints on the rare tau decays from mu --> e gamma in the supersymmetric see-saw model
- Large Neutrino Mixing with Universal Strength of Yukawa Couplings
- Consistency of the dynamical high-scale type-I seesaw mechanism
- SUSY dark matter and lepton flavor violation
- Cosmological implications of Standard Model criticality and Higgs inflation
- Scrutinizing Vacuum Stability in IDM with Type-III Inverse seesaw
- Gravity-improved metastability bounds for the Type-I Seesaw Mechanism
- Dynamical inverse seesaw mechanism as a simple benchmark for electroweak breaking and Higgs boson studies
- Vacuum Stability in Inert Higgs Doublet Model with Right-handed Neutrinos
- Theories for the Fermi Scale
- Seesaw and noncommutative geometry
- Inflation and dark matter after spontaneous Planck scale generation by hidden chiral symmetry breaking
- Heavy Dark Matter, Neutrino Masses and Higgs Naturalness from a Strongly Interacting Hidden Sector
- No-go limitations on UV completions of the Neutrino Option
- The Problem of Large Leptonic Mixing
- Higgs Boson Mass Bounds in Seesaw Extended Standard Model with Non-Minimal Gravitational Coupling
- Neutrinos Meet Supersymmetry: Quantum Aspects of of Neutrinophysics in Supersymmetric Theories
- The Neutrino Option
- Generalized Seesaw Mechanism of Neutrino and Bose-Einstein Condensation in the Modified O'Raifeartaigh Model
- Confronting the real scalar septuplet minimal dark matter model with vacuum stability, perturbativity, and Type-I and Type-III seesaws