We study how the properties of a Lagrangian density for a single real scalar field in flat spacetime change with inclusion of an overall factor depending only on the field. The focus of the paper is to obtain analytical results. So, we show that even though it is possible to perform a field redefinition to get an equivalent canonical model, it is not always feasible to write the canonical model in terms of elementary functions. Also, we investigate the behavior of the energy density and the linear stability of the solutions. Finally, we show that one can find a class of models that present the same energy density and the same stability potential
We study the stability of 5D gravitational solutions containing an arbitrary number of scalar fields...
Analyzing the Klein-Gordon equation in a homogeneous, isotropic and spatially flat universe model, w...
We derive a set of equations monitoring the evolution of covariant and gauge-invariant linear scalar...
International audienceWe perform a general analysis of the dynamic structure of two classes of relat...
An attractive method of obtaining an effective cosmological constant at the present epoch is through...
We investigate the presence of twinlike models in theories described by several real scalar fields. ...
AbstractThis work deals with braneworld models driven by real scalar fields with nonstandard dynamic...
In this thesis we perform a broad study of a class of relativistic field theories supporting non-top...
We explore dynamics of cosmological models with a nonminimally coupled scalar field evolving on a sp...
We generally investigate a new class of scalar field model with the lagrangian $L=F(X)-V(\phi)$. We ...
We derive a set of equations monitoring the evolution of covariant and gauge-invariant linear scalar...
This work investigates twinlike scalar field models that support kinks with the same energy density ...
As shown in the works [1-3], the asymptotic behavior of the propagator in the Euclidean region of mo...
The objective of this Thesis is to explore several related questions with regards to criteria for vi...
In this paper, we consider various dark energy models in the framework of a non-canonical scalar fie...
We study the stability of 5D gravitational solutions containing an arbitrary number of scalar fields...
Analyzing the Klein-Gordon equation in a homogeneous, isotropic and spatially flat universe model, w...
We derive a set of equations monitoring the evolution of covariant and gauge-invariant linear scalar...
International audienceWe perform a general analysis of the dynamic structure of two classes of relat...
An attractive method of obtaining an effective cosmological constant at the present epoch is through...
We investigate the presence of twinlike models in theories described by several real scalar fields. ...
AbstractThis work deals with braneworld models driven by real scalar fields with nonstandard dynamic...
In this thesis we perform a broad study of a class of relativistic field theories supporting non-top...
We explore dynamics of cosmological models with a nonminimally coupled scalar field evolving on a sp...
We generally investigate a new class of scalar field model with the lagrangian $L=F(X)-V(\phi)$. We ...
We derive a set of equations monitoring the evolution of covariant and gauge-invariant linear scalar...
This work investigates twinlike scalar field models that support kinks with the same energy density ...
As shown in the works [1-3], the asymptotic behavior of the propagator in the Euclidean region of mo...
The objective of this Thesis is to explore several related questions with regards to criteria for vi...
In this paper, we consider various dark energy models in the framework of a non-canonical scalar fie...
We study the stability of 5D gravitational solutions containing an arbitrary number of scalar fields...
Analyzing the Klein-Gordon equation in a homogeneous, isotropic and spatially flat universe model, w...
We derive a set of equations monitoring the evolution of covariant and gauge-invariant linear scalar...