Title of article :
Liouville dressed weights and renormalization of spin in topologically massive gravity Original Research Article
Author/Authors :
Ian I. Kogan، نويسنده , , Richard J. Szabo، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1997
Pages :
36
From page :
383
To page :
418
Abstract :
We examine the relations between observables in two- and three-dimensional quantum gravity by studying the coupling of topologically massive gravity to matter fields in non-trivial representations of the three-dimensional Lorentz group. We show that the gravitational renormalization of spin up to one-loop order in these theories reproduces the leading orders of the KPZ scaling relations for quantum Liouville theory. We demonstrate that the two-dimensional scaling dimensions can be computed from tree-level Aharonov-Bohm scattering amplitudes between the charged particles in the limit where the three-dimensional theory possesses local conformal invariance. We show how the three-dimensional description defines scale-dependent weights by computing the one-loop order anomalous magnetic moment of fermions in a background electromagnetic field due to the renormalization by topologically massive gravity. We also discuss some aspects concerning the different phases of three-dimensional quantum gravity and argue that the topological ones may be related to the branched polymer phase of two-dimensional quantum gravity.
Keywords :
* Induced spin , * Quantum Lionville theory , * Conformal dimensions , * Aharonov-Bohm effect , * Topologically massive gravity
Journal title :
Nuclear Physics B
Serial Year :
1997
Journal title :
Nuclear Physics B
Record number :
878907
Link To Document :
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