arXiv · 2103.09855
Delta Baryons in Neutron-Star Matter under Strong Magnetic Fields
Abstract
In this work, we study magnetic field effects on neutron star matter containing the baryon octet and additional heavier spin 3/2 baryons (the $\Delta$'s). We make use of two different relativistic hadronic models that contain an additional vector-isovector self interaction for the mesons: one version of a relativistic mean field (RMF) model and the Chiral Mean Field (CMF) model. We find that both the additional interaction and a strong magnetic field enhance the $\Delta$ baryon population in dense matter, while decreasing the relative density of hyperons. At the same time that the vector-isovector meson interaction modifies neutron-star masses very little ($<0.1~M_\odot$), it decreases their radii considerably, allowing both models to be in better agreement with observations. Together, these features indicate that magnetic neutron stars are likely to contain $\Delta$ baryons in their interior.
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Veronica Dexheimer, Kauan D. Marquez, Débora P. Menezes. 2021-03-17. Delta Baryons in Neutron-Star Matter under Strong Magnetic Fields. https://doi.org/10.1140/epja/s10050-021-00532-6
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