We consider the cosmology derived from f(T, B) gravity where T is the torsion scalar and $$B=\frac{2}{e}\partial _{\mu }(e T^{\mu })$$ a boundary term. In particular we discuss how it is possible to recover, under the same standard, the teleparallel f(T) gravity, the curvature f(R) gravity, and the teleparallel–curvature f(R, T) gravity, which are particular cases of f(T, B). We adopt the Noether Symmetry Approach to study the related dynamical systems and to find cosmological solutions
We consider a general theory of all possible quadratic, first-order derivative terms of the non-metr...
We explore the recently introduced modified Gauss–Bonnet gravity (Sharif and Ikram in Eur Phys J C 7...
In this paper, in the framework of teleparallel gravity we consider scalar tensor theories of gravit...
We consider the cosmology derived from f(T, B) gravity where T is the torsion scalar and [Formula: s...
We consider the cosmology derived from f(T, B) gravity where T is the torsion scalar and [Formula: s...
We consider the cosmology derived from f(T, B) gravity where T is the torsion scalar and [Formula: s...
We consider curvature-teleparallel F(R,T) gravity, where the gravitational Lagrangian density is giv...
The Noether Symmetry approach is applied to study an extended teleparallel $$f(T,\phi )$$ gravity th...
We consider curvature-teleparallel F(R,T) gravity, where the gravitational Lagrangian density is giv...
We consider the cosmology derived from f(T, B) gravity where T is the torsion scalar and B=2e∂μ(eTμ...
The Noether Symmetry approach is applied to study an extended teleparallel $$f(T,\phi )$$ gravity th...
A generalized teleparallel cosmological model, [Formula: see text], containing the torsion scalar T ...
A generalized teleparallel cosmological model, [Formula: see text], containing the torsion scalar T ...
A general approach for finding exact cosmological solutions in f(R) gravity is discussed. Instead of...
AbstractWe discuss scalar–tensor cosmology with an extra R−1 correction by the Noether symmetry appr...
We consider a general theory of all possible quadratic, first-order derivative terms of the non-metr...
We explore the recently introduced modified Gauss–Bonnet gravity (Sharif and Ikram in Eur Phys J C 7...
In this paper, in the framework of teleparallel gravity we consider scalar tensor theories of gravit...
We consider the cosmology derived from f(T, B) gravity where T is the torsion scalar and [Formula: s...
We consider the cosmology derived from f(T, B) gravity where T is the torsion scalar and [Formula: s...
We consider the cosmology derived from f(T, B) gravity where T is the torsion scalar and [Formula: s...
We consider curvature-teleparallel F(R,T) gravity, where the gravitational Lagrangian density is giv...
The Noether Symmetry approach is applied to study an extended teleparallel $$f(T,\phi )$$ gravity th...
We consider curvature-teleparallel F(R,T) gravity, where the gravitational Lagrangian density is giv...
We consider the cosmology derived from f(T, B) gravity where T is the torsion scalar and B=2e∂μ(eTμ...
The Noether Symmetry approach is applied to study an extended teleparallel $$f(T,\phi )$$ gravity th...
A generalized teleparallel cosmological model, [Formula: see text], containing the torsion scalar T ...
A generalized teleparallel cosmological model, [Formula: see text], containing the torsion scalar T ...
A general approach for finding exact cosmological solutions in f(R) gravity is discussed. Instead of...
AbstractWe discuss scalar–tensor cosmology with an extra R−1 correction by the Noether symmetry appr...
We consider a general theory of all possible quadratic, first-order derivative terms of the non-metr...
We explore the recently introduced modified Gauss–Bonnet gravity (Sharif and Ikram in Eur Phys J C 7...
In this paper, in the framework of teleparallel gravity we consider scalar tensor theories of gravit...