Exploring the Hyperchargeless Higgs Triplet Model up to the Planck Scale
arXiv:1610.03178 · doi:10.1140/epjc/s10052-018-5766-4
Abstract
We examine an extension of the SM Higgs sector by a Higgs triplet taking into consideration the Higgs-like particle discovery at the LHC with mass around 125 GeV. We evaluate the bounds on the scalar potential through the unitarity of the scattering-matrix. Considering with and without -symmetry on the extra triplet, we derive constraints on the parameter space. We identify the region of the parameter space that corresponds to the stability and metastability of the electroweak vacuum. We also show that at large field values the scalar potential of this model is suitable to explain inflation.
24 pages, 9 figures
References in corpus (27)
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- The Standard Model Higgs boson as the inflaton
- Results from a search for dark matter in the complete LUX exposure
- Dark Matter Results from 225 Live Days of XENON100 Data
- First Dark Matter Search Results from the XENON1T Experiment
- The global electroweak fit at NNLO and prospects for the LHC and ILC
- Observation of the diphoton decay of the Higgs boson and measurement of its properties
- Inflation scenario via the Standard Model Higgs boson and LHC
- Indirect search for dark matter with micrOMEGAs2.4
- Measurement of Higgs boson production in the diphoton decay channel in collisions at center-of-mass energies of 7 and 8 TeV with the ATLAS detector
- The lifetime of the electroweak vacuum and sensitivity to Planck scale physics
- Gravitational corrections to Standard Model vacuum decay
- Triplet Scalars and Dark Matter at the LHC
- Top mass determination, Higgs inflation, and vacuum stability
- A study of electroweak vacuum metastability with a singlet scalar dark matter
- Dark Matter in Inert Triplet Models
- Inflation by non-minimal coupling
- Higgs Triplets and Limits from Precision Measurements
- (Non)decoupling of the Higgs triplet effects
- Impact of Gravity on Vacuum Stability
- Leptogenesis, radiative neutrino masses and inert Higgs triplet dark matter
- Power law Starobinsky model of inflation from no-scale SUGRA
- Triplet Scalar Dark Matter and Leptogenesis in an Inverse See-Saw Model of Neutrino Mass Generation
- Impact of New Physics on the EW vacuum stability in a curved spacetime background
- Constraining Inert Triplet Dark Matter by the LHC and FermiLAT
- Plateau Inflation in SUGRA-MSSM
- Plateau Inflation in -parity Violating MSSM
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- Leading two-loop corrections to the Higgs boson self-couplings in models with extended scalar sectors
- Collider Probes of Real Triplet Scalar Dark Matter
- Electroweak precision tests for triplet scalars
- Dark photon kinetic mixing effects for the CDF W-mass measurement
- Probing the Higgs sector of Higgs Triplet Model at LHC
- Distinguishing Inert Higgs Doublet and Inert Triplet Scenarios
- Two-Step Electroweak Symmetry-Breaking: Theory Meets Experiment
- Portals into Higgs vacuum stability
- Constraining minimal Type-III Seesaw Model from naturalness, Lepton Flavor Violation and Electroweak Vacuum stability
- Two Component Singlet-Triplet Scalar Dark Matter and Electroweak Vacuum Stability
- Electroweak dark matter model accounting for the CDF -mass anomaly
- The Triplet Dirac Seesaw in the View of the Recent CDF-II W Mass Anomaly
- Singlet-doublet fermion and triplet scalar dark matter with radiative neutrino masses
- Phenomenological study of neutrino mass, dark matter and baryogenesis within the framework of minimal extended seesaw
- Unitarity constraints in triplet extensions beyond the large s limit
- Impact of Fermionic Electroweak Multiplet Dark Matter on Vacuum Stability with One-loop Matching
- Scrutinizing Vacuum Stability in IDM with Type-III Inverse seesaw
- Prospecting bipartite Dark Matter through Gravitational Waves
- How heavy can dark matter be? Constraining colourful unitarity with SARAH
- High Scale Boundary Conditions in Models with Two Higgs Doublets
- The FIMP-WIMP dark matter in the extended singlet scalar model
- A Real Triplet-Singlet Extended Standard Model: Dark Matter and Collider Phenomenology
- Probing quadruplet scalar dark matter at current and future colliders
- Inert sextuplet scalar dark matter at the LHC and future colliders
- New constraints on radiative seesaw models from IceCube and other neutrino detectors
- Axionic Dirac seesaw and electroweak vacuum stability
- Fate of the scalar quartic couplings in the inert models
- Thermal Real Scalar Triplet Dark Matter
- FIMP DM in the Extended Hyperchargeless Higgs Triplet Model
- Two dark matter candidates in a doublet-triplet Higgs model
- Unitarity bounds on extensions of Higgs sector
- Constraining Scalar Doublet and Triplet Leptoquarks with Vacuum Stability and Perturbativity
- The stability analysis of the extended singlet scalar model with two high scale minima