General-relativistic stable spacetimes can be made unstable under the presence of certain nonminimally coupled free scalar fields. In this paper, we analyze the evolution of linear scalar-field perturbations in spherically symmetric spacetimes and compare the classical stability analysis with a recently discussed quantum field one. In particular, it is shown that vacuum fluctuations lead to natural seeds for the unstable phase, whereas in the classical framework the presence of such seeds in the initial conditions must be assumed.Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq
International audienceWe study the backreaction of gravitationally amplified quantum fluctuations of...
The Euclidean or Bunch-Davies O(4, 1) invariant ‘vacuum ’ state of quantum fields in global de Sitte...
International audienceWe study the backreaction of gravitationally amplified quantum fluctuations of...
General-relativistic stable spacetimes can be made unstable under the presence of certain nonminimal...
It has been shown that gravitational fields produced by realistic classical-matter distributions can...
Besides serving as effective models for more complex interactions, scalar fields also arise as interes...
We study the stability of static, spherically symmetric solutions to the Einstein equations with a s...
We study the stability of static, spherically symmetric solutions to the Einstein equations with a s...
We review the theory of quantum fields propagating in an arbitrary, classical, globally hyperbolic s...
The scalar field theory on the background of cosmological models with n(n#>=#1) spaces of constan...
The behavior of fundamental fields in strong gravity or nontrivial environments is important for our...
We discuss the quantization of an unstable field through the construction of a one-particle Hilbert ...
Nonminimally coupled free scalar fields may be unstable in the spacetime of compact objects. Such in...
We investigate the dynamical behavior of a scalar field non-minimally coupled to Einstein’s tensor a...
Abstract We investigate the dynamical behavior of a scalar field non-minimally coupled to Einstein’s...
International audienceWe study the backreaction of gravitationally amplified quantum fluctuations of...
The Euclidean or Bunch-Davies O(4, 1) invariant ‘vacuum ’ state of quantum fields in global de Sitte...
International audienceWe study the backreaction of gravitationally amplified quantum fluctuations of...
General-relativistic stable spacetimes can be made unstable under the presence of certain nonminimal...
It has been shown that gravitational fields produced by realistic classical-matter distributions can...
Besides serving as effective models for more complex interactions, scalar fields also arise as interes...
We study the stability of static, spherically symmetric solutions to the Einstein equations with a s...
We study the stability of static, spherically symmetric solutions to the Einstein equations with a s...
We review the theory of quantum fields propagating in an arbitrary, classical, globally hyperbolic s...
The scalar field theory on the background of cosmological models with n(n#>=#1) spaces of constan...
The behavior of fundamental fields in strong gravity or nontrivial environments is important for our...
We discuss the quantization of an unstable field through the construction of a one-particle Hilbert ...
Nonminimally coupled free scalar fields may be unstable in the spacetime of compact objects. Such in...
We investigate the dynamical behavior of a scalar field non-minimally coupled to Einstein’s tensor a...
Abstract We investigate the dynamical behavior of a scalar field non-minimally coupled to Einstein’s...
International audienceWe study the backreaction of gravitationally amplified quantum fluctuations of...
The Euclidean or Bunch-Davies O(4, 1) invariant ‘vacuum ’ state of quantum fields in global de Sitte...
International audienceWe study the backreaction of gravitationally amplified quantum fluctuations of...