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Towards the renormalization group flow of Horava gravity in $(3+1)$ dimensions

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abstract

We compute the renormalization group running of the Newton constant and the parameter $\lambda$ in $(3+1)$-dimensional projectable Horava gravity. We use the background field method expanding around configurations with flat spatial metric, but non-vanishing shift. This allows us to reduce the number of interaction vertices and thereby drastically simplify the calculations. The gauge invariant $\beta$-function of $\lambda$ has two families of zeros, attractive in the infrared and ultraviolet respectively. They are candidates for the fixed points of the full renormalization group flow of the theory, once the $\beta$-functions for the rest of the couplings are added.

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gr-qc 1

years

2024 1

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CONDITIONAL 1

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Renormalization group flow of projectable Ho\v{r}ava gravity in (3+1) dimensions

gr-qc · 2024-11-13 · conditional · novelty 7.0

In (3+1)-dimensional projectable Horava gravity, a unique ultraviolet fixed point produces renormalization group trajectories covering the entire unitary range of the kinetic coupling and predicts a large hierarchy between the Planck mass and the Lorentz violation scale.

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  • Renormalization group flow of projectable Ho\v{r}ava gravity in (3+1) dimensions gr-qc · 2024-11-13 · conditional · none · ref 38 · internal anchor

    In (3+1)-dimensional projectable Horava gravity, a unique ultraviolet fixed point produces renormalization group trajectories covering the entire unitary range of the kinetic coupling and predicts a large hierarchy between the Planck mass and the Lorentz violation scale.