Stochastic Gravity: A Primer with Applications
arXiv:gr-qc/0211090 · doi:10.1088/0264-9381/20/6/201
Abstract
Stochastic semiclassical gravity of the 90's is a theory naturally evolved from semiclassical gravity of the 70's and 80's. It improves on the semiclassical Einstein equation with source given by the expectation value of the stress-energy tensor of quantum matter fields in curved spacetimes by incorporating an additional source due to their fluctuations. In stochastic semiclassical gravity the main object of interest is the noise kernel, the vacuum expectation value of the (operator-valued) stress-energy bi-tensor, and the centerpiece is the (stochastic) Einstein-Langevin equation. We describe this new theory via two approaches: the axiomatic and the functional. The axiomatic approach is useful to see the structure of the theory from the framework of semiclassical gravity. The functional approach uses the Feynman-Vernon influence functional and the Schwinger-Keldysh close-time-path effective action methods which are convenient for computations. It also brings out the open systems concepts and the statistical and stochastic contents of the theory such as dissipation, fluctuations, noise and decoherence. We then describe the application of stochastic gravity to the backreaction problems in cosmology and black hole physics. Intended as a first introduction to this subject, this article places more emphasis on pedagogy than completeness.
46 pages Latex. Intended as a review in {\it Classical and Quantum Gravity}
References in corpus (3)
- Noise Kernel and Stress Energy Bi-Tensor of Quantum Fields in Hot Flat Space and Gaussian Approximation in the Optical Schwarzschild Metric
- Black Hole Fluctuations and Backreaction in Stochastic Gravity
- Noise Kernel and Stress Energy Bi-Tensor of Quantum Fields in Conformally-Optical Metrics: Schwarzschild Black Holes
Cited by in corpus (53)
- Analogue Gravity
- Probing semiclassical analogue gravity in Bose--Einstein condensates with widely tunable interactions
- Stochastic Gravity: Theory and Applications
- Stochastic Gravity: Theory and Applications
- Bell's Theorem for Temporal Order
- Selected topics in Planck-scale physics
- Problems with the Newton-Schrödinger Equations
- Probing a Gravitational Cat State
- Induced quantum metric fluctuations and the validity of semiclassical gravity
- Can Spacetime be a Condensate?
- One-loop Corrections to Scalar and Tensor Perturbations during Inflation in Stochastic Gravity
- One-loop gravitational wave spectrum in de Sitter spacetime
- Stress tensor fluctuations in de Sitter spacetime
- Relativistic hydrodynamics with sources for cosmological K-fluids
- Cosmological perturbations from stochastic gravity
- Metric fluctuations of an evaporating black hole from back reaction of stress tensor fluctuations
- Stability of de Sitter spacetime under isotropic perturbations in semiclassical gravity
- Uniformly Accelerated Charge in a Quantum Field: From Radiation Reaction to Unruh Effect
- Statistical consistency of quantum-classical hybrids
- Black Hole Fluctuations and Backreaction in Stochastic Gravity
- Backreaction from non-conformal quantum fields in de Sitter spacetime
- Role of evaporation in gravitational collapse
- Quantum-Gravity Decoherence Effects in Neutrino Oscillations: Expected Constraints from CNGS and J-PARC
- Methods of approaching decoherence in the flavour sector due to space-time foam
- Fokker-Planck type equations for a simple gas and for a semi-relativistic Brownian motion from a relativistic kinetic theory
- Self-Force with a Stochastic Component from Radiation Reaction of a Scalar Charge Moving in Curved Spacetime
- Noise kernel for a quantum field in Schwarzschild spacetime under the Gaussian approximation
- Possible Constraints on the Duration of Inflationary Expansion from Quantum Stress Tensor Fluctuations
- Stochastic modification of the Schrodinger-Newton equation
- Propagation in a thermal graviton background
- Cosmological Density Fluctuations in Stochastic Gravity -- Formalism and Linear Analysis --
- Fluctuations of an evaporating black hole from back reaction of its Hawking radiation: Questioning a premise in earlier work
- Stress-energy Tensor Correlators of a Quantum Field in Euclidean and spaces via the generalized zeta-function method
- Noise kernels of stochastic gravity in conformally-flat spacetimes
- Decoherence in Quantum Gravity: Issues and Critiques
- Black hole fluctuations and dynamics from back-reaction of Hawking radiation: Current work and further studies based on stochastic gravity
- Gravitational Decoherence, Alternative Quantum Theories and Semiclassical Gravity
- Chaos, decoherence and quantum cosmology
- Semi-classical approximations based on Bohmian mechanics
- Macroscopic quantum phenomena from the large N perspective
- Real time approach to tunneling in open quantum systems: decoherence and anomalous diffusion
- Stochastic Einstein equations with fluctuating volume
- Some notes about the density of states for a negative pressure matter
- Classical Einstein-Langevin Equation and Proposed Applications
- Stochastic Gravity: Beyond Semiclassical Gravity
- Analogue Stochastic Gravity in Strongly-Interacting Bose-Einstein Condensates
- Exploration of Possible Quantum Gravity Effects with Neutrinos I: Decoherence in Neutrino Oscillations Experiments
- Fourth order full quantum correlations from a Langevin-Schwinger-Dyson equation
- Correlations of the stress-energy tensor in AdS spaces via the generalized zeta-function method
- Conformally-related Einstein-Langevin equations for metric fluctuations in stochastic gravity
- Quantum Brownian representation for the quantum field modes
- Quantum Noise and Fluctuations in Gravitation and Cosmology
- Relational Time as a Stochastic Variable in ADM Gravity