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On Spinfoam Models in Large Spin Regime

2013/04/30 by Muxin Han · 1 citation
Physics and Astronomy · Mathematics · #gr-qc #hep-th #math-ph #math.MP

paper · pdf · doi:10.1088/0264-9381/31/1/015004

published as Class. Quantum Grav. 31 (2014) 015004 · 20 pages, no figure, presentation improved, published version

arxiv created 2013/11/15 · arxiv updated 2013/11/18

Abstract

We study the semiclassical behavior of Lorentzian Engle-Pereira-Rovelli-Livine (EPRL) spinfoam model, by taking into account the sum over spins in the large spin regime. We also employ the method of stationary phase analysis with parameters and the so called, almost-analytic machinery, in order to find the asymptotic behavior of the contributions from all possible large spin configurations in the spinfoam model. The spins contributing the sum are written as Jf=λjf where ł is a large parameter resulting in an asymptotic expansion via stationary phase approximation. The analysis shows that at least for the simplicial Lorentzian geometries (as spinfoam critical configurations), they contribute the leading order approximation of spinfoam amplitude only when their deficit angles satisfy γΘf≤λ-1/2 mod 4πℤ. Our analysis results in a curvature expansion of the semiclassical low energy effective action from the spinfoam model, where the UV modifications of Einstein gravity appear as subleading high-curvature corrections.

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