arXiv · 1611.02751
The effect of inclusion of $\Delta$ resonances in relativistic mean-field model with scaled hadron masses and coupling constants
Abstract
Knowledge of the equation of state of the baryon matter plays a decisive role in the description of neutron stars. With an increase of the baryon density the filling of Fermi seas of hyperons and $\Delta$ isobars becomes possible. Their inclusion into standard relativistic mean-field models results in a strong softening of the equation of state and a lowering of the maximum neutron star mass below the measured values. We extend a relativistic mean-field model with scaled hadron masses and coupling constants developed in our previous works and take into account now not only hyperons but also the $\Delta$ isobars. We analyze available empirical information to put constraints on coupling constants of $\Delta$s to mesonic mean fields. We show that the resulting equation of state satisfies majority of presently known experimental constraints.
Explore related subjects
Keep this discovery
K. A. Maslov, E. E. Kolomeitsev, D. N. Voskresensky. 2016-11-08. The effect of inclusion of $\Delta$ resonances in relativistic mean-field model with scaled hadron masses and coupling constants. https://doi.org/10.1088/1742-6596%2F798%2F1%2F012070
Cite the original work for its findings. Save a collection to share your selection of sources.