We study the renormalized energy-momentum tensor of gravitons in a de Sitter space-time. After canonically quantizing only the physical degrees of freedom, we adopt the standard adiabatic subtraction used for massless minimally coupled scalar fields as a regularization procedure and find that the energy density of gravitons in the E(3) invariant vacuum is proportional to H^4, where H is the Hubble parameter, but with a positive sign. According to this result the scalar expansion rate, which is gauge invariant in de Sitter space-time, is increased by the fluctuations. This implies that gravitons may then add to conformally coupled matter in driving the Starobinsky model of inflation
The stress-energy tensors are computed for scalar and spinor fields with arbitrary mass in anti-de S...
International audienceWe propose a simple model that provides a dynamical cancellation mechanism of ...
The regularization of the CMB power spectrum is an important issue of cosmology. Most approaches ass...
We study the renormalized energy-momentum tensor of gravitons in a de Sitter space-time. After canon...
We propose a new scheme to regularize the stress-energy tensor and the two-point function of free qu...
We perform the point-splitting regularization on the vacuum stress tensor of a coupling scalar field...
We compute the one loop graviton contribution to the self-energy of a very light fermion on a locall...
Abstract Energy momentum tensor of a conformally coupled quantum scalar field in five dimensional wa...
In this paper we propose an alternative method for the computation of classical density perturbation...
We provide an explicit expression for the renormalized expectation value of the stress-energy tensor...
Determinants of the second rank tensors stand useful in forming generally invariant terms as in the ...
The two-point function characterizing the stress tensor fluctuations of a massless minimally coupled...
In this paper, we consider a massive charged scalar field coupled to a uniform electric field backgr...
The two-point function of the stress tensor operator of a quantum field in de Sitter spacetime is ca...
International audienceWe compute all the gravitational form factors in the scalar diquark model at t...
The stress-energy tensors are computed for scalar and spinor fields with arbitrary mass in anti-de S...
International audienceWe propose a simple model that provides a dynamical cancellation mechanism of ...
The regularization of the CMB power spectrum is an important issue of cosmology. Most approaches ass...
We study the renormalized energy-momentum tensor of gravitons in a de Sitter space-time. After canon...
We propose a new scheme to regularize the stress-energy tensor and the two-point function of free qu...
We perform the point-splitting regularization on the vacuum stress tensor of a coupling scalar field...
We compute the one loop graviton contribution to the self-energy of a very light fermion on a locall...
Abstract Energy momentum tensor of a conformally coupled quantum scalar field in five dimensional wa...
In this paper we propose an alternative method for the computation of classical density perturbation...
We provide an explicit expression for the renormalized expectation value of the stress-energy tensor...
Determinants of the second rank tensors stand useful in forming generally invariant terms as in the ...
The two-point function characterizing the stress tensor fluctuations of a massless minimally coupled...
In this paper, we consider a massive charged scalar field coupled to a uniform electric field backgr...
The two-point function of the stress tensor operator of a quantum field in de Sitter spacetime is ca...
International audienceWe compute all the gravitational form factors in the scalar diquark model at t...
The stress-energy tensors are computed for scalar and spinor fields with arbitrary mass in anti-de S...
International audienceWe propose a simple model that provides a dynamical cancellation mechanism of ...
The regularization of the CMB power spectrum is an important issue of cosmology. Most approaches ass...