English

A connection between linearized Gauss-Bonnet gravity and classical electrodynamics II: Complete dual formulation

General Relativity and Quantum Cosmology 2021-04-05 v1

Abstract

In a recent publication a procedure was developed which can be used to derive completely gauge invariant models from general Lagrangian densities with NN order of derivatives and MM rank of tensor potential. This procedure was then used to show that unique models follow for each order, namely classical electrodynamics for N=M=1N = M = 1 and linearized Gauss-Bonnet gravity for N=M=2N = M = 2. In this article, the nature of the connection between these two well explored physical models is further investigated by means of an additional common property; a complete dual formulation. First we give a review of Gauss-Bonnet gravity and the dual formulation of classical electrodynamics. The dual formulation of linearized Gauss-Bonnet gravity is then developed. It is shown that the dual formulation of linearized Gauss-Bonnet gravity is analogous to the homogenous half of Maxwell's theory; both have equations of motion corresponding to the (second) Bianchi identity, built from the dual form of their respective field strength tensors. In order to have a dually symmetric counterpart analogous to the non-homogenous half of Maxwell's theory, the first invariant derived from the procedure in N=M=2N = M = 2 can be introduced. The complete gauge invariance of a model with respect to Noether's first theorem, and not just the equation of motion, is a necessary condition for this dual formulation. We show that this result can be generalized to the higher spin gauge theories, where the spin-nn curvature tensors for all N=M=nN = M = n are the field strength tensors for each nn. These completely gauge invariant models correspond to the Maxwell-like higher spin gauge theories whose equations of motion have been well explored in the literature.

Keywords

Cite

@article{arxiv.2104.00988,
  title  = {A connection between linearized Gauss-Bonnet gravity and classical electrodynamics II: Complete dual formulation},
  author = {Mark Robert Baker},
  journal= {arXiv preprint arXiv:2104.00988},
  year   = {2021}
}

Comments

26 pages

R2 v1 2026-06-24T00:48:09.447Z