Sexaquark dilemma in neutron stars and its solution by quark deconfinement
arXiv:2202.00652 · doi:10.1103/PhysRevD.105.103005
Abstract
Following the idea that a stable sexaquark state with quark content (uuddss) would have gone unnoticed by experiment so far and that such a particle would be a good dark matter candidate, we investigate the possible role of a stable sexaquark in the physics of compact stars given the stringent constraints on the equation of state that stem from observations of high mass pulsars and GW170817 bounds on the compactness of intermediate mass stars. We find that there is a "sexaquark dilemma" (analogous to the hyperon dilemma) for which the dissociation of the sexaquark in quark matter is a viable solution fulfilling all present constraints from multi-messenger astronomy. The parameters needed to model the hybrid star including sexaquarks are in line with parameters of pre-existing quark- and hadronic-matter models. We find that current constraints -- tidal deformability in accordance with GW170817 and maximum mass above the lower limit from PSR J0740+6620 -- can be satisfied two ways: with early quark deconfinement such that neither sexaquarks nor hyperons are present in any NS interiors, or with later deconfinement such that a neutron-sexaquark shell surrounds the inner quark matter core.
21 pages, 15 figures, 4 tables
References in corpus (11)
- A Massive Pulsar in a Compact Relativistic Binary
- 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
- Constraints on the high-density nuclear equation of state from the phenomenology of compact stars and heavy-ion collisions
- Light Nuclei and Hypernuclei from Quantum Chromodynamics in the Limit of SU(3) Flavor Symmetry
- Evidence for a Bound H-dibaryon from Lattice QCD
- Relativistic model for nuclear matter and atomic nuclei with momentum-dependent self-energies
- A new temperature dependent hyperonic equation of state: application to rotating neutron star models and I-Q-relations
- Hybrid stars within a covariant, nonlocal chiral quark model
- Massive -resonance admixed hypernuclear stars with anti-kaon condensations
- Neutron stars with crossover to color superconducting quark matter
Cited by in corpus (4)
- Recovering the conformal limit of color superconducting quark matter within a confining density functional approach
- Exploring the distribution and impact of bosonic dark matter in neutron stars
- The impact of asymmetric dark matter on the thermal evolution of nucleonic and hyperonic compact stars
- Compact Star Twins with a Dark Matter Core