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A healthy extension of Horava gravity

D. Blas, O. Pujolas, S. Sibiryakov

TL;DR

A natural extension of Horava's model for quantum gravity is proposed, which endows the scalar graviton mode with a regular quadratic action and remains power-counting renormalizable at low energies.

Abstract

We propose a natural extension of Horava's model for quantum gravity, which is free from the notorious pathologies of the original proposal. The new model endows the scalar graviton mode with a regular quadratic action and remains power-counting renormalizable. At low energies, it reduces to a Lorentz-violating scalar-tensor gravity theory. The deviations with respect to general relativity can be made weak by an appropriate choice of parameters.

A healthy extension of Horava gravity

TL;DR

A natural extension of Horava's model for quantum gravity is proposed, which endows the scalar graviton mode with a regular quadratic action and remains power-counting renormalizable at low energies.

Abstract

We propose a natural extension of Horava's model for quantum gravity, which is free from the notorious pathologies of the original proposal. The new model endows the scalar graviton mode with a regular quadratic action and remains power-counting renormalizable. At low energies, it reduces to a Lorentz-violating scalar-tensor gravity theory. The deviations with respect to general relativity can be made weak by an appropriate choice of parameters.

Paper Structure

This paper contains 1 section, 24 equations.

Table of Contents

  1. Acknowledgments