We consider a self-interacting scalar field theory in a slowly varying gravitational background field. Using zeta-function regularization and heat-kernel techniques, we derive the one-loop effective Lagrangian up to second order in the variation of the background field and up to quadratic terms in the curvature tensors. Specializing to different spacetimes of physical interest, the influence of the curvature on the phase transition is considered
We investigate the chaotic inflationary model using the two-loop effective potential of a self-inter...
The one-loop effective action for a massive self-interacting scalar field is investigated in 4-dimen...
We define the renormalization group flow for a renormalizable interacting quantum field in curved sp...
We calculate the effective potentials for scalar, Dirac and Yang-Mills fields in curved backgrounds ...
We investigate spatially flat isotropic cosmological models which contain a scalar field with an exp...
Electrodynamics for self-interacting scalar fields in spatially flat Friedmann– Robertson–Walker sp...
The functional formulation and one-loop effective action for scalar self-interacting theory non-line...
International audienceWe study the backreaction of gravitationally amplified quantum fluctuations of...
Abstract We study the behaviour of a light quartically self-interacting scalar field ϕ on curved bac...
We calculate the one-loop effective potential of a scalar field in a Robertson-Walker background wit...
We explore the dynamical behaviour of cosmological models involving a scalar field (with an exponent...
The effect of quantum corrections to a conformally invariant field theory for a self-interacting sca...
We consider a theory of N self-interacting quantum scalar fields with quartic O(N)-symmetric potenti...
The renormalisation group improved Standard Model effective potential in an arbitrary curved spaceti...
We investigate in detail the qualitative behaviour of the class of Bianchi type B spatially homogene...
We investigate the chaotic inflationary model using the two-loop effective potential of a self-inter...
The one-loop effective action for a massive self-interacting scalar field is investigated in 4-dimen...
We define the renormalization group flow for a renormalizable interacting quantum field in curved sp...
We calculate the effective potentials for scalar, Dirac and Yang-Mills fields in curved backgrounds ...
We investigate spatially flat isotropic cosmological models which contain a scalar field with an exp...
Electrodynamics for self-interacting scalar fields in spatially flat Friedmann– Robertson–Walker sp...
The functional formulation and one-loop effective action for scalar self-interacting theory non-line...
International audienceWe study the backreaction of gravitationally amplified quantum fluctuations of...
Abstract We study the behaviour of a light quartically self-interacting scalar field ϕ on curved bac...
We calculate the one-loop effective potential of a scalar field in a Robertson-Walker background wit...
We explore the dynamical behaviour of cosmological models involving a scalar field (with an exponent...
The effect of quantum corrections to a conformally invariant field theory for a self-interacting sca...
We consider a theory of N self-interacting quantum scalar fields with quartic O(N)-symmetric potenti...
The renormalisation group improved Standard Model effective potential in an arbitrary curved spaceti...
We investigate in detail the qualitative behaviour of the class of Bianchi type B spatially homogene...
We investigate the chaotic inflationary model using the two-loop effective potential of a self-inter...
The one-loop effective action for a massive self-interacting scalar field is investigated in 4-dimen...
We define the renormalization group flow for a renormalizable interacting quantum field in curved sp...