Stability of Semiclassical Gravity Solutions with Respect to Quantum Metric Fluctuations

被引:0
作者
B. L. Hu
Albert Roura
Enric Verdaguer
机构
[1] University of Maryland,Department of Physics
[2] College Park,Department de Física Fonamental and CER en Astrofísica, Física de Partícules i Cosmologia
[3] Universitat de Barcelona,undefined
[4] Av. Diagonal 647,undefined
来源
International Journal of Theoretical Physics | 2004年 / 43卷
关键词
semiclassical gravity; quantum metric fluctuations; stochastic gravity; Einstein–Langevin equation;
D O I
暂无
中图分类号
学科分类号
摘要
We discuss the stability of semiclassical gravity solutions with respect to small quantum corrections by considering the quantum fluctuations of the metric perturbations around the semiclassical solution. We call the attention to the role played by the symmetrized 2-point quantum correlation function for the metric perturbations, which can be naturally decomposed into two separate contributions: intrinsic and induced fluctuations. We show that traditional criteria on the stability of semiclassical gravity are incomplete because these criteria based on the linearized semiclassical Einstein equation can only provide information on the expectation value and the intrinsic fluctuations of the metric perturbations. By contrast, the framework of stochastic semiclassical gravity provides a more complete and accurate criterion because it contains information on the induced fluctuations as well. The Einstein–Langevin equation therein contains a stochastic source characterized by the noise kernel (the symmetrized 2-point quantum correlation function of the stress tensor operator) and yields stochastic correlation functions for the metric perturbations which agree, to leading order in the large N limit, with the quantum correlation functions of the theory of gravity interacting with N matter fields. These points are illustrated with the example of Minkowski space-time as a solution to the semiclassical Einstein equation, which is found to be stable under both intrinsic and induced fluctuations.
引用
收藏
页码:749 / 766
页数:17
相关论文
共 89 条
[1]  
Anderson P. R.(2003)Linear Responce, Validity of Semi-Classical Gravity, and the Stability of Flat Space Physical Review. D: Particles and Fields 67 024026-undefined
[2]  
Molina-Paris C.(2004)The Effects of Stress Tensor Fluctuations upon Focusing Living Reviews in Relativity 7 5-undefined
[3]  
Mottola E.(1997)Stochastic semiclassical cosmological models Physical Review D: Particles and Fields 56 2163-undefined
[4]  
Borgman J.(1987)Closed time path functional formalism in curved space-time: ap-plication to cosmological backreaction problems Physical Review D: Particles and Fields 35 495-undefined
[5]  
Ford L. H.(1994)Noise and fluctuations in semiclassical gravity Physical Review D: Particles and Fields 49 6636-undefined
[6]  
Calzetta E.(1994)Semiclassical equations for weakly inhomogeneous cosmologies Physical Review D: Particles and Fields 49 1861-undefined
[7]  
Campos A.(1996)Stochastic semiclassical equations for weakly inhomogeneous cosmologies Physical Review D: Particles and Fields 53 1927-undefined
[8]  
Verdaguer E.(1979)Quantum fields in the early universe. I. Influence of trace anomalies on homogeneous, isotropic, classical geometries Physical Review D: Particles and Fields 20 1757-undefined
[9]  
Calzetta E.(1996)Does backreaction enforce the averaged null energy condition in semiclassical gravity? Physical Review D: Particles and Fields 54 6233-undefined
[10]  
Hu B. L.(1982)Gravitational radiation by quantum systems Annals of Physics 144 238-undefined