The couplings of the electroweak effective theory contain information on the heavy-mass scales which are no-longer present in the low-energy Lagrangian. We build a general effective Lagrangian, implementing the electroweak chiral symmetry breaking SU(2) L ⊗ SU(2) R → SU(2) L+R , which couples the known particle fields to heavier states with bosonic quantum numbers J P = 0± and 1±. We consider colour-singlet heavy fields that are in singlet or triplet representations of the electroweak group. Integrating out these heavy scales, we analyze the pattern of low-energy couplings among the light fields which are generated by the massive states. We adopt a generic non-linear realization of the electroweak symmetry breaking with a singlet Higgs, wit...
We consider the Standard Model, including a light scalar boson h , as an effective theory at the wea...
Using a general effective Lagrangian implementing the chiral symmetry breaking SU(2)L x SU(2)R -> SU...
Using a general effective Lagrangian implementing the chiral symmetry breaking SU(2)L x SU(2)R -> SU...
Abstract The couplings of the electroweak effective theory contain information on the heavy-mass sca...
We analyze heavy states from generic ultraviolet completions of the Standard Model in a model-indepe...
The LHC has confirmed the existence of a mass gap between the known particles and possible new state...
Accepting that there is a mass gap above the electroweak scale, the Electroweak Effective Theory (EW...
We consider the Standard Model, including a light scalar boson h, as an effective theory at the weak...
We consider the Standard Model, including a light scalar boson h, as an effective theory at the weak...
Accepting that there is a mass gap above the electroweak scale, the Electroweak Effective Theory (EW...
We consider the Standard Model, including a light scalar boson h, as an effective theory at the weak...
We consider the Standard Model, including a light scalar boson h, as an effective theory at the weak...
The apparent absence of new heavy states at the LHC below the TeV scale points that there is a gap i...
It has been confirmed experimentally the existence of a mass gap between Standard Model (SM) and eve...
AbstractWe consider the Standard Model, including a light scalar boson h, as an effective theory at ...
We consider the Standard Model, including a light scalar boson h , as an effective theory at the wea...
Using a general effective Lagrangian implementing the chiral symmetry breaking SU(2)L x SU(2)R -> SU...
Using a general effective Lagrangian implementing the chiral symmetry breaking SU(2)L x SU(2)R -> SU...
Abstract The couplings of the electroweak effective theory contain information on the heavy-mass sca...
We analyze heavy states from generic ultraviolet completions of the Standard Model in a model-indepe...
The LHC has confirmed the existence of a mass gap between the known particles and possible new state...
Accepting that there is a mass gap above the electroweak scale, the Electroweak Effective Theory (EW...
We consider the Standard Model, including a light scalar boson h, as an effective theory at the weak...
We consider the Standard Model, including a light scalar boson h, as an effective theory at the weak...
Accepting that there is a mass gap above the electroweak scale, the Electroweak Effective Theory (EW...
We consider the Standard Model, including a light scalar boson h, as an effective theory at the weak...
We consider the Standard Model, including a light scalar boson h, as an effective theory at the weak...
The apparent absence of new heavy states at the LHC below the TeV scale points that there is a gap i...
It has been confirmed experimentally the existence of a mass gap between Standard Model (SM) and eve...
AbstractWe consider the Standard Model, including a light scalar boson h, as an effective theory at ...
We consider the Standard Model, including a light scalar boson h , as an effective theory at the wea...
Using a general effective Lagrangian implementing the chiral symmetry breaking SU(2)L x SU(2)R -> SU...
Using a general effective Lagrangian implementing the chiral symmetry breaking SU(2)L x SU(2)R -> SU...