Dynamical content of quantum diffeomorphisms in two-dimensional quantum gravity

DOI: 
10.1016/S0920-5632(00)00773-8
Publication date: 
01/06/2000
Main author: 
Aldaya, V
IAA authors: 
Aldaya, V; Jaramillo, JL
Authors: 
Aldaya, V; Jaramillo, JL
Journal: 
NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS
Publication type: 
Article
Volume: 
88
Pages: 
229-232
Number: 
Abstract: 
A model for PD-quantum gravity from the Virasoro symmetry is studied. The notion of space-time naturally arises as a homogeneous space associated with the kinematical (non-dynamical) SL(2,R) symmetry in the kernel of the Lie-algebra central extension for the critical values of the conformal anomaly. The rest of the generators in the group, L-\n\greater than or equal to 2, mix space-times with different constant curvature. Only in the classical limit all space-times can be identified, defining a unique Minkowski space-time, and the operators L-\n\greater than or equal to 2 gauged away. This process entails a restriction to SL(2,R) subrepresentations, which creates a non-trivial two-dimensional symplectic classical phase space. The present model thus suggests that the role of general covariance in quantum gravity is different from that played in the classical limit.
Database: 
WOK
ADS
URL: 
https://ui.adsabs.harvard.edu/#abs/2000NuPhS..88..229A/abstract
ADS Bibcode: 
2000NuPhS..88..229A
Keywords: