Adding a scalar triplet to the Standard Model is one of the simplest ways of giving mass to neutrinos, providing at the same time a mechanism to stabilize the theory's vacuum. In this paper, we revisit these aspects of the type-II seesaw model pointing out that the bounded-from-below conditions for the scalar potential in use in the literature are not correct. We discuss some scenarios where the correction can be significant and sketch the typical scalar boson profile expected by consistency
The type II seesaw mechanism is an attractive way to generate the observed light neutrino masses. It...
In this thesis, the type I and type II see-saw models are considered separately as the mechanism to ...
We derive general bounds on the Type-III Seesaw parameters from a global fit to flavor and electrowe...
International audienceIn this paper, we consider a minimal extension to the standard model by a scal...
New physics coupling to the Higgs sector of the Standard Model can lead to dangerously large correct...
55 pages, 9 figures, no major changes, references added, a comment added to sec 3.1, typos corrected...
The type II seesaw mechanism for neutrino mass generation usually makes use of one complex scalar tr...
We study the electroweak vacuum stability in Type I seesaw models for three generations of neutrinos...
The triplet or type-II seesaw mechanism is the simplest way to endow neutrinos with mass in the Stan...
We study the vacuum stability and perturbativity conditions in the minimal type-II seesaw model. The...
In the 3-3-1 model with right-handed neutrinos, three triplets of scalars engender the correct seque...
We investigate the collider phenomenology of the scalar triplet particles in the Type-II seesaw mode...
The triplet or type-II seesaw mechanism is the simplest way to endow neutrinos with mass in the Stan...
The triplet scalars (Delta = Delta(++), Delta(+), Delta(0)) utilized in the so-called type-II seesaw...
In Type-II seesaw model, an electroweak triplet scalar field $\Delta$ with a non-zero vacuum expecta...
The type II seesaw mechanism is an attractive way to generate the observed light neutrino masses. It...
In this thesis, the type I and type II see-saw models are considered separately as the mechanism to ...
We derive general bounds on the Type-III Seesaw parameters from a global fit to flavor and electrowe...
International audienceIn this paper, we consider a minimal extension to the standard model by a scal...
New physics coupling to the Higgs sector of the Standard Model can lead to dangerously large correct...
55 pages, 9 figures, no major changes, references added, a comment added to sec 3.1, typos corrected...
The type II seesaw mechanism for neutrino mass generation usually makes use of one complex scalar tr...
We study the electroweak vacuum stability in Type I seesaw models for three generations of neutrinos...
The triplet or type-II seesaw mechanism is the simplest way to endow neutrinos with mass in the Stan...
We study the vacuum stability and perturbativity conditions in the minimal type-II seesaw model. The...
In the 3-3-1 model with right-handed neutrinos, three triplets of scalars engender the correct seque...
We investigate the collider phenomenology of the scalar triplet particles in the Type-II seesaw mode...
The triplet or type-II seesaw mechanism is the simplest way to endow neutrinos with mass in the Stan...
The triplet scalars (Delta = Delta(++), Delta(+), Delta(0)) utilized in the so-called type-II seesaw...
In Type-II seesaw model, an electroweak triplet scalar field $\Delta$ with a non-zero vacuum expecta...
The type II seesaw mechanism is an attractive way to generate the observed light neutrino masses. It...
In this thesis, the type I and type II see-saw models are considered separately as the mechanism to ...
We derive general bounds on the Type-III Seesaw parameters from a global fit to flavor and electrowe...