Cold quark matter: Renormalization group improvement at next-to-next-to leading order

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Abstract

We extend previous next-to-next-to leading order (NNLO) calculations of the quantum chromodynamics (QCD) pressure at zero temperature and nonzero baryonic densities using the renormalization group optimized perturbation theory (RGOPT), which entails an all-order RG-invariant resummation. First, we consider the approximation of three massless quark flavors, and then we add the running strange quark mass dependence. The resulting pressure displays a sizeably reduced sensitivity to variations of the arbitrary renormalization scale as compared to the state-of-the-art NNLO results. This confirms previous NLO investigations that the RGOPT resummation scheme provides improved convergence properties and reduced renormalization scale uncertainties, thus being a promising prescription to improve perturbative QCD at high and mid range baryonic densities.

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Fernandez, L., & Kneur, J. L. (2025). Cold quark matter: Renormalization group improvement at next-to-next-to leading order. Physical Review D, 111(3). https://doi.org/10.1103/PhysRevD.111.034020

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