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Exact solution of discrete two-dimensional R$^{2}$ gravity

We exactly solve a special matrix model of dually weighted planar graphs describing pure two-dimensional quantum gravity with a R^2 interaction in order to study the intermediate regimes between the gravitating and flat metric. The flat space is modeled by a regular square lattice, while localized c...

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Detalles Bibliográficos
Autores principales: Kazakov, V A, Staudacher, M, Wynter, T
Lenguaje:eng
Publicado: 1996
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0550-3213(96)00184-8
http://cds.cern.ch/record/294170
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author Kazakov, V A
Staudacher, M
Wynter, T
author_facet Kazakov, V A
Staudacher, M
Wynter, T
author_sort Kazakov, V A
collection CERN
description We exactly solve a special matrix model of dually weighted planar graphs describing pure two-dimensional quantum gravity with a R^2 interaction in order to study the intermediate regimes between the gravitating and flat metric. The flat space is modeled by a regular square lattice, while localized curvature is being introduced through defects of the lattice. No ``flattening'' phase transition is found with respect to the R^2 coupling: the infrared behaviour of the system is that of pure gravity for any finite R^2 coupling. In the limit of infinite coupling, we are able to extract a scaling function interpolating between pure gravity and a phase of a dilute gas of curvature defects on a flat background. We introduce and explain some novel techniques concerning our method of large N character expansions and the calculation of Schur characters on big Young tableaux.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1996
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spelling cern-2941702019-09-30T06:29:59Zdoi:10.1016/0550-3213(96)00184-8http://cds.cern.ch/record/294170engKazakov, V AStaudacher, MWynter, TExact solution of discrete two-dimensional R$^{2}$ gravityParticle Physics - TheoryWe exactly solve a special matrix model of dually weighted planar graphs describing pure two-dimensional quantum gravity with a R^2 interaction in order to study the intermediate regimes between the gravitating and flat metric. The flat space is modeled by a regular square lattice, while localized curvature is being introduced through defects of the lattice. No ``flattening'' phase transition is found with respect to the R^2 coupling: the infrared behaviour of the system is that of pure gravity for any finite R^2 coupling. In the limit of infinite coupling, we are able to extract a scaling function interpolating between pure gravity and a phase of a dilute gas of curvature defects on a flat background. We introduce and explain some novel techniques concerning our method of large N character expansions and the calculation of Schur characters on big Young tableaux.hep-th/9601069CERN-TH-95-352LPT-ENS-95-56oai:cds.cern.ch:2941701996-01-14
spellingShingle Particle Physics - Theory
Kazakov, V A
Staudacher, M
Wynter, T
Exact solution of discrete two-dimensional R$^{2}$ gravity
title Exact solution of discrete two-dimensional R$^{2}$ gravity
title_full Exact solution of discrete two-dimensional R$^{2}$ gravity
title_fullStr Exact solution of discrete two-dimensional R$^{2}$ gravity
title_full_unstemmed Exact solution of discrete two-dimensional R$^{2}$ gravity
title_short Exact solution of discrete two-dimensional R$^{2}$ gravity
title_sort exact solution of discrete two-dimensional r$^{2}$ gravity
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/0550-3213(96)00184-8
http://cds.cern.ch/record/294170
work_keys_str_mv AT kazakovva exactsolutionofdiscretetwodimensionalr2gravity
AT staudacherm exactsolutionofdiscretetwodimensionalr2gravity
AT wyntert exactsolutionofdiscretetwodimensionalr2gravity