Radial Oscillations in Neutron Stars with Delta Baryons
arXiv:2303.11006 · doi:10.1103/PhysRevD.107.123022
Abstract
We investigate the effect of baryons on the radial oscillations of neutron and hyperon stars, employing a density-dependent relativistic mean-field model. The spin- baryons are described by the Rarita-Schwinger Lagrangian density. The baryon-meson coupling constants for the spin-3/2 decuplet and the spin-1/2 baryonic octet are calculated using a unified approach relying on the fact that the Yukawa couplings present in the Lagrangian density of the mean-field models must be invariant under the SU(3) and SU(6) group transformations. We calculate the 20 lowest eigenfrequencies and corresponding oscillation functions of -inclusive nuclear (N+) and hyperonic matter (N+H+) by solving the Sturm-Liouville boundary value problem and also verifying its validity. We see that the lowest mode frequencies for N+ and N+H EoSs are higher as compared to the pure nucleonic matter because of the deltas and hyperons present. Furthermore, the separation between consecutive modes increases with the addition of hyperons and s.
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References in corpus (19)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- Relativistic Mean-Field Hadronic Models under Nuclear Matter Constraints
- Sound velocity bound and neutron stars
- The pasta phase within density dependent hadronic models
- The Vlasov formalism for extended relativistic mean field models: the crust-core transition and the stellar matter equation of state
- Relativistic description of dense matter equation of state and compatibility with neutron star observables: a Bayesian approach
- Gravitational Waves from Nonlinear Couplings of Radial and Polar Nonradial Modes in Relativistic Stars
- Gravitational waves from f-modes excited by the inspiral of highly eccentric neutron star binaries
- Effects of the symmetry energy on properties of neutron star crusts near the neutron drip density
- Delta baryons and diquark formation in the cores of neutron stars
- Influence of the symmetry energy on nuclear pasta in neutron star crusts
- Radial Oscillations of Dark Matter admixed Neutron Stars
- -admixed neutron stars: spinodal instabilities and dUrca processes
- The baryon coupling scheme in an unified SU(3) and SU(6) symmetry formalism
- Oscillation Modes and Gravitational Waves from Strangeon Stars
- Delta baryons in neutron stars
- Exotic Baryons in Hot Neutron Stars
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- Probing the impact of Delta-Baryons on Nuclear Matter and Non-Radial Oscillations in Neutron Stars
- Fundamental Oscillation Modes in Neutron Stars with Hyperons and Delta Baryons
- Non-Radial Oscillation Modes in Hybrid Stars with Hyperons and Delta Baryons
- Effect of Dark matter and -cut potential on radial and non-radial oscillation modes in neutron stars
- Impact of hyperons on structural properties of neutron stars and hybrid stars within the regularized four-dimensional Einstein-Gauss-Bonnet gravity
- Radial oscillations of quark stars in light of current astrophysical constraints: A comparative study