English

A Loop Quantum Gravity Inspired Action for the Bosonic String and Emergent Dimensions at Large Scales

High Energy Physics - Theory 2025-11-07 v2

Abstract

We propose a modification of the Nambu-Goto action for the bosonic string which is compatible with the existence of a minimum area at the Planck scale. The result is a phenomenological action based on the observation that LQG tells us that areas of two-surfaces are operators in quantum geometry and are bounded from below. This leads us to a string action which is similar to that of bimetric gravity. We provide formulations of the bimetric string action for both the Nambu-Goto (second order) and Polyakov (first order) formulations. We explore the classical solutions of this action and its quantization and relate it to the conventional string solutions. We further construct a string action in which the effect of the background geometry is described in terms of the pullback of the bulk connection, which encodes the bulk geometry, to the worldsheet. The resulting string action is in the form of a gauged sigma model, where the spacetime co-ordinates are now vectors which transform under the Poincar\'e group ISO(D,1)ISO(D,1). This requires the introduction of an auxiliary bulk co-ordinate which has a natural interpretation as a holographic or scale direction. We discuss possible cosmological implications of such a large scale emergent dimension.

Keywords

Cite

@article{arxiv.2407.13807,
  title  = {A Loop Quantum Gravity Inspired Action for the Bosonic String and Emergent Dimensions at Large Scales},
  author = {Deepak Vaid and Luigi Teixeira de Sousa},
  journal= {arXiv preprint arXiv:2407.13807},
  year   = {2025}
}

Comments

v2: Modified title, abstract, greatly improved introduction

R2 v1 2026-06-28T17:46:30.374Z