Title of article
Discrete gravity in one dimension Original Research Article
Author/Authors
Herbert W. Hamber، نويسنده , , Ruth M. Williams، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 1995
Pages
20
From page
305
To page
324
Abstract
A model for quantum gravity in one (time) dimension is discussed, based on Reggeʹs discrete formulation of gravity. The nature of exact continuous lattice diffeomorphisms and the implications for a regularized gravitational measure are examined. After introducing a massless scalar field coupled to the edge lengths, the scalar functional integral is performed exactly on a finite lattice, and the ensuing change in the measure is determined. It is found that the renormalization of the cosmological constant due to the scalar field fluctuations vanishes identically in one dimension. A simple decimition renormalization group transformation is performed on the partition function and the results are compared with the exact solution. Finally the properties of the spectrum of the scalar Laplacian are compared with results obtained for a Poissonian distribution of edge lengths.
Journal title
Nuclear Physics B
Serial Year
1995
Journal title
Nuclear Physics B
Record number
877470
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