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Type: Inproceedings
Local gauge theory and coarse grainng
Book Title: Loops 11: Non-Pertubative / Background Independent Quantum Gravity
Abstract:
Within the discrete gauge theory which is the basis of spin foam models, I study the problem of macroscopically faithful coarse graining. Macroscopic data is identified; it contains the holonomy evaluation along a discrete set of loops and the homotopy classes of certain maps. When two configurations share this data they are related by a local deformation. The interpretation is that such configurations differ by "microscopic details". In many cases the homotopy type of the relevant maps is trivial for every connection; two important cases in which the homotopy data is composed by a set of integer numbers are: (i) a two dimensional base manifold and structure group U(1),(ii) a four dimensional base manifold and structure group SU(2). These cases are relevant for spin foam models of two dimensional gravity and four dimensional gravity respectively. This result suggests that if spin foam models for two dimensional and four-dimensional gravity are modified to include all the relevant macroscopic degrees of freedom-, the complete collection of macroscopic variables necessary to ensure faithful coarse graining-, then they could provide appropriate effective theories at a given scale.
Within the discrete gauge theory which is the basis of spin foam models, I study the problem of macroscopically faithful coarse graining. Macroscopic data is identified; it contains the holonomy evaluation along a discrete set of loops and the homotopy classes of certain maps. When two configurations share this data they are related by a local deformation. The interpretation is that such configurations differ by "microscopic details". In many cases the homotopy type of the relevant maps is trivial for every connection; two important cases in which the homotopy data is composed by a set of integer numbers are: (i) a two dimensional base manifold and structure group U(1),(ii) a four dimensional base manifold and structure group SU(2). These cases are relevant for spin foam models of two dimensional gravity and four dimensional gravity respectively. This result suggests that if spin foam models for two dimensional and four-dimensional gravity are modified to include all the relevant macroscopic degrees of freedom-, the complete collection of macroscopic variables necessary to ensure faithful coarse graining-, then they could provide appropriate effective theories at a given scale.
Publisher: IOP Publishing LTD
Address: Dirac House, Temple Back, Bristol BS1 6BE, England
ISSN: 1742-6588
Year: 2012
Volume: 360
Revision: 1
Notas: International Conference on Non-Perturbative/Background Independent Quantum Gravity (LOOPS), Madrid, SPAIN, MAY 23-28, 2011.
Accession Number: WOS:000307711600054



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