High-mass twins & resolution of the reconfinement, masquerade and hyperon puzzles of compact star interiors
arXiv:1503.03834 · doi:10.1063/1.4938602
Abstract
We aim at contributing to the resolution of three of the fundamental puzzles related to the still unsolved problem of the structure of the dense core of compact stars (CS): (i) the hyperon puzzle: how to reconcile pulsar masses of M with the hyperon softening of the equation of state (EoS); (ii) the masquerade problem: modern EoS for cold, high density hadronic and quark matter are almost identical; and (iii) the reconfinement puzzle: what to do when after a deconfinement transition the hadronic EoS becomes favorable again? We show that taking into account the compositeness of baryons (by excluded volume and/or quark Pauli blocking) on the hadronic side and confining and stiffening effects on the quark matter side results in an early phase transition to quark matter with sufficient stiffening at high densities which removes all three present-day puzzles of CS interiors. Moreover, in this new class of EoS for hybrid CS falls the interesting case of a strong first order phase transition which results in the observable high mass twin star phenomenon, an astrophysical observation of a critical endpoint in the QCD phase diagram.
6 pages, 4 figures, prepared for the Proceedings of the Conference "XIth Quark Confinement and the Hadron Spectrum", September 8 to 12, Saint-Petersburg State University, Russia
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Cited by in corpus (23)
- New class of hybrid EoS and Bayesian M-R data analysis
- Signals in the tidal deformability for phase transitions in compact stars with constraints from GW170817
- High-mass twin stars with a multi-polytrope EoS
- Classifications of Twin Star Solutions for a Constant Speed of Sound Parameterized Equation of State
- Stable hybrid stars within a SU(3) Quark-Meson-Model
- Supermassive Neutron Stars Rule Out Twin Stars
- Confirming the existence of twin stars in a NICER way
- Twin Stars within the SU(3) Chiral Quark-Meson Model
- Speed of Sound in Hybrid Stars and the Role of Bag Pressure in the Emergence of Special Points on M-R Variation of Hybrid Stars
- Bayesian Analysis for Extracting Properties of the Nuclear Equation of State from Observational Data including Tidal Deformability from GW170817
- Implications of the fermion vacuum term in the extended SU(3) Quark Meson model on compact stars properties
- A Detailed Analysis of the Special Points on Solutions of Hybrid (Twin) Stars
- Properties of Hybrid Stars with Density Dependent Bag Model
- A mixing interpolation method to mimic pasta phases in compact star matter
- Towards generating a new supernova equation of state: A systematic analysis of cold hybrid stars
- Comprehensive Analysis of Constructing Hybrid Stars with an RG-consistent NJL Model
- Mixed Phase within the Multi-polytrope Approach to High Mass Twins
- Energy bursts from deconfinement in high-mass twin stars
- Cosmological Constant Effects on the Properties of Mass Twin Compact Stars
- Bayesian analysis for two-parameter hybrid EoS with high-mass compact star twins
- Bayesian analysis of multimessenger M-R data with interpolated hybrid EoS
- Supporting the existence of the QCD critical point by compact star observations
- Production of nuclei and hypernuclei in pion-induced reactions near threshold energies