English

$\pi_0$ pole mass calculation in a strong magnetic field and lattice constraints

High Energy Physics - Phenomenology 2017-02-23 v2 High Energy Physics - Lattice Nuclear Theory

Abstract

The π0\pi_0 neutral meson pole mass is calculated in a strongly magnetized medium using the SU(2) Nambu-Jona-Lasinio model within the random phase approximation (RPA) at zero temperature and zero baryonic density. We employ a magnetic field dependent coupling, G(eB)G(eB), fitted to reproduce lattice QCD results for the quark condensates. Divergent quantities are handled with a magnetic field independent regularization scheme in order to avoid unphysical oscillations. A comparison between the running and the fixed couplings reveals that the former produces results much closer to the predictions from recent lattice calculations. In particular, we find that the π0\pi_0 meson mass systematically decreases when the magnetic field increases while the scalar mass remains almost constant. We also investigate how the magnetic background influences other mesonic properties such as fπ0f_{{\pi}_0} and gπ0qqg_{\pi_0 q q}.

Keywords

Cite

@article{arxiv.1606.05754,
  title  = {$\pi_0$ pole mass calculation in a strong magnetic field and lattice constraints},
  author = {Sidney S. Avancini and Ricardo L. S. Farias and Marcus Benghi Pinto and William R. Tavares and Varese S. Timóteo},
  journal= {arXiv preprint arXiv:1606.05754},
  year   = {2017}
}

Comments

7 pages, 5 figures, v2 PLB version