Towards Nonperturbation Theory of Emergent Gravity
Abstract
We investigate an emergent gravity in dimensions underlying a geometric torsion in order formulation. We show that an emergent pair-symmetric th order curvature tensor underlying a NS field theory governs a torsion free geometry and is identified as the Riemann type tensor. Interestingly a pair anti-symmetric th order tensor is shown to incorporate a dynamical correction underlying a gauge potential and is identified with a non-perturbative correction. The non-perturbative term in the emergent action is shown to be described by a gauge invariant in a second order theory underlying an onshell in a first order. A complete emergent theory is elegantly described with an axion, and hence a quintessence, coupling to the Riemann type geometries. The curvatures are appropriately worked out to obtain a emergent theory. Further investigation reveals that a pair of -brane are created across an event horizon. We obtain an emergent theory which in a decoupling limit identifies with the bosonic sector of SUGRA in .
Keywords
Cite
@article{arxiv.1610.07347,
title = {Towards Nonperturbation Theory of Emergent Gravity},
author = {Supriya Kar},
journal= {arXiv preprint arXiv:1610.07347},
year = {2016}
}
Comments
6 pages, minor revision, added references, typos corrected