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Parametrized Post-Newtonian Expansion of Chern-Simons Gravity

High Energy Physics - Theory 2008-11-26 v1 Astrophysics General Relativity and Quantum Cosmology

Abstract

We investigate the weak-field, post-Newtonian expansion to the solution of the field equations in Chern-Simons gravity with a perfect fluid source. In particular, we study the mapping of this solution to the parameterized post-Newtonian formalism to 1 PN order in the metric. We find that the PPN parameters of Chern-Simons gravity are identical to those of general relativity, with the exception of the inclusion of a new term that is proportional to the Chern-Simons coupling parameter and the curl of the PPN vector potentials. We also find that the new term is naturally enhanced by the non-linearity of spacetime and we provide a physical interpretation for it. By mapping this correction to the gravito-electro-magnetic framework, we study the corrections that this new term introduces to the acceleration of point particles and the frame-dragging effect in gyroscopic precession. We find that the Chern-Simons correction to these classical predictions could be used by current and future experiments to place bounds on intrinsic parameters of Chern-Simons gravity and, thus, string theory.

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Cite

@article{arxiv.0704.0299,
  title  = {Parametrized Post-Newtonian Expansion of Chern-Simons Gravity},
  author = {Stephon Alexander and Nicolas Yunes},
  journal= {arXiv preprint arXiv:0704.0299},
  year   = {2008}
}

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