In this work we discuss the dynamical generation of mass in a deformed N=1 supersymmetric nonlinear sigma model in a two-dimensional (D=1+1) space–time. We introduce the deformation by imposing a constraint that softly breaks supersymmetry. Through the tadpole method, we compute the effective potential at leading order in 1/N expansion showing that the model exhibit a dynamical generation of mass to the matter fields. Supersymmetry is recovered in the limit of the deformation parameter going to zero
In MSSM models with various boundary conditions for the soft breaking terms (m_{soft}) and for a hig...
AbstractIn this paper, we discuss the generalizations of exact supersymmetries present in the supers...
We present a complete, calculable, and phenomenologically viable model of dynamical supersymmetry br...
We consider a novel class of constraints on chiral superfields to obtain supersymmetric nonlinear si...
AbstractWe consider a novel class of constraints on chiral superfields to obtain supersymmetric nonl...
In this work we study the dynamical generation of mass in the massless N = 1 Wess-Zumino model in a ...
AbstractWe present an extension of the mass sum rule that applies to renormalizable rigid supersymme...
Considering the N = 1 supersymmetry transformations of supersymmetric nonlinear sigma models in 1 + ...
International audienceWe study the partial breaking of $ \mathcal{N}=2 $ global supersymmetry, using...
The (nonlinear) sigma model is defined as a field theory whose configurations are sections of a nont...
A four-dimensional N=2 supersymmetric non-linear sigma-model with the Eguchi-Hanson (ALE) target spa...
We work out the phenomenology of a model of supersymmetry breaking in the presence of a tiny (tunabl...
Abstract We study the partial breaking of N = 2 $$ \mathcal{N}=2 $$ global supersymmetry, using a no...
By computing the two-loop effective potential of the D=3 N=1 supersymmetric Chern-Simons model minim...
AbstractWe work out the phenomenology of a model of supersymmetry breaking in the presence of a tiny...
In MSSM models with various boundary conditions for the soft breaking terms (m_{soft}) and for a hig...
AbstractIn this paper, we discuss the generalizations of exact supersymmetries present in the supers...
We present a complete, calculable, and phenomenologically viable model of dynamical supersymmetry br...
We consider a novel class of constraints on chiral superfields to obtain supersymmetric nonlinear si...
AbstractWe consider a novel class of constraints on chiral superfields to obtain supersymmetric nonl...
In this work we study the dynamical generation of mass in the massless N = 1 Wess-Zumino model in a ...
AbstractWe present an extension of the mass sum rule that applies to renormalizable rigid supersymme...
Considering the N = 1 supersymmetry transformations of supersymmetric nonlinear sigma models in 1 + ...
International audienceWe study the partial breaking of $ \mathcal{N}=2 $ global supersymmetry, using...
The (nonlinear) sigma model is defined as a field theory whose configurations are sections of a nont...
A four-dimensional N=2 supersymmetric non-linear sigma-model with the Eguchi-Hanson (ALE) target spa...
We work out the phenomenology of a model of supersymmetry breaking in the presence of a tiny (tunabl...
Abstract We study the partial breaking of N = 2 $$ \mathcal{N}=2 $$ global supersymmetry, using a no...
By computing the two-loop effective potential of the D=3 N=1 supersymmetric Chern-Simons model minim...
AbstractWe work out the phenomenology of a model of supersymmetry breaking in the presence of a tiny...
In MSSM models with various boundary conditions for the soft breaking terms (m_{soft}) and for a hig...
AbstractIn this paper, we discuss the generalizations of exact supersymmetries present in the supers...
We present a complete, calculable, and phenomenologically viable model of dynamical supersymmetry br...