Linear Response, Validity of Semi-Classical Gravity, and the Stability of Flat Space
arXiv:gr-qc/0209075 · doi:10.1103/PhysRevD.67.024026
Abstract
A quantitative test for the validity of the semi-classical approximation in gravity is given. The criterion proposed is that solutions to the semi-classical Einstein equations should be stable to linearized perturbations, in the sense that no gauge invariant perturbation should become unbounded in time. A self-consistent linear response analysis of these perturbations, based upon an invariant effective action principle, necessarily involves metric fluctuations about the mean semi-classical geometry, and brings in the two-point correlation function of the quantum energy-momentum tensor in a natural way. This linear response equation contains no state dependent divergences and requires no new renormalization counterterms beyond those required in the leading order semi-classical approximation. The general linear response criterion is applied to the specific example of a scalar field with arbitrary mass and curvature coupling in the vacuum state of Minkowski spacetime. The spectral representation of the vacuum polarization function is computed in n dimensional Minkowski spacetime, and used to show that the flat space solution to the semi-classical Einstein equations for n=4 is stable to all perturbations on distance scales much larger than the Planck length.
22 pages: This is a significantly expanded version of gr-qc/0204083, with two additional sections and two new appendices giving a complete, explicit example of the semi-classical stability criterion proposed in the previous paper
Cited by in corpus (40)
- Stochastic Gravity: Theory and Applications
- Stochastic Gravity: Theory and Applications
- Cosmological Dark Energy: Prospects for a Dynamical Theory
- Solving the Conformal Constraints for Scalar Operators in Momentum Space and the Evaluation of Feynman's Master Integrals
- Testing the running of the cosmological constant with Type Ia Supernovae at high z
- Induced quantum metric fluctuations and the validity of semiclassical gravity
- Cosmological Horizon Modes and Linear Response in de Sitter Spacetime
- Stability of de Sitter spacetime under isotropic perturbations in semiclassical gravity
- The cosmological constant as a manifestation of the conformal anomaly?
- Post-Einsteinian tests of linearized gravitation
- Noise Kernel and Stress Energy Bi-Tensor of Quantum Fields in Hot Flat Space and Gaussian Approximation in the Optical Schwarzschild Metric
- Noise kernel for a quantum field in Schwarzschild spacetime under the Gaussian approximation
- Gravitational waves and stability of cosmological solutions in the theory with anomaly-induced corrections
- The Effective Theory of Gravity and Dynamical Vacuum Energy
- Scalar Gravitational Waves in the Effective Theory of Gravity
- Tensor instabilities at the end of the LCDM universe
- Renormalization and causality violations in classical gravity coupled with quantum matter
- Quantum Spacetime Instability and Breakdown of Semiclassical Gravity
- On the scaling rules for the anomaly-induced effective action of metric and electromagnetic field
- Horizon entanglement area law from regular black hole thermodynamics
- Instability of De Sitter Spacetime induced by Quantum Conformal Anomaly
- Pair production due to an electric field in 1+1 dimensions and the validity of the semiclassical approximation
- On the weight of entanglement
- Spacetime instability due to quantum gravity
- Quantum Modifications to Gravity Waves in de Sitter Spacetime
- Linear stability of semiclassical theories of gravity
- Spacetime foam induced collective bundling of intense fields
- Fully renormalized stress tensor correlator in flat space
- Breakdown of the semiclassical approximation during the early stages of preheating
- Quantum (in)stability of maximally symmetric space-times
- Spin-Spacetime Censorship
- Holographic duality and mode stability of de Sitter space in semiclassical gravity
- Pauli-Villars regularization of Kaluza-Klein Casimir energy with Lorentz symmetry
- Quasiparticle excitations in relativistic quantum field theory
- Particle creation and the Schwinger model
- Gravitational spectral shift caused by Casimir stresses
- Spacetime Instability and Quantum Gravity as Low Energy Effective Field Theory
- Linear Response Analysis of the Semiclassical Approximation to Spin 1/2 Quantum Electrodynamics in 1+1 Dimensions
- Existence and uniqueness of solutions of the semiclassical Einstein equation in cosmological models
- A local diagnostic program for unitary evolution in general space-times