Sound velocity in dense stellar matter with strangeness and compact stars
arXiv:1906.00826 · doi:10.1088/1674-1137/abea0d
Abstract
The phase state of dense matter in the intermediate density range (1-10 times the nuclear saturation density) is both intriguing and unclear and could have important observable effects in the present gravitational wave era of neutron stars. As the matter density increases in compact stars, the sound velocity is expected to approach the conformal limit () at high densities and should also fulfill the causality limit (). However, its detailed behavior remains a hot topic of debate. It was suggested that the sound velocity of dense matter could be an important indicator for a deconfinement phase transition, where a particular shape might be expected for its density dependence. In this work, we explore the general properties of the sound velocity and the adiabatic index of dense matter in hybrid stars, as well as in neutron stars and quark stars. Various conditions are employed for hadron-quark phase transition with varying interface tension. We find that the expected behavior of the sound velocity can also be achieved by the nonperturbative properties of the quark phase, in addition to a deconfinement phase transition. And it leads to a more compact star with a similar mass. We then propose a new class of quark star equation of states, which could be tested by future high-precision radius measurements of pulsar-like objects.
10 pages, 5 figures, 1 table, review article to appear in Chinese Physics C
References in corpus (28)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Shapiro delay measurement of a two solar mass neutron star
- 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
- A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation
- Relativistic Shapiro delay measurements of an extremely massive millisecond pulsar
- Color superconductivity in dense quark matter
- Evidence for quark-matter cores in massive neutron stars
- Quarkyonic Matter and Neutron Stars
- Sound velocity bound and neutron stars
- Constraint on the maximum mass of neutron stars using GW170817 event
- Neutron star tidal deformability and equation of state constraints
- Gravitational waves from neutron star mergers and their relation to the nuclear equation of state
- New Neutron Star Equation of State with Quark-Hadron Crossover
- Hadron-quark mixed phase in hyperon stars
- Dense matter with eXTP
- Mass Ejection by Strange Star Mergers and Observational Implications
- Deconfinement phase transition in hybrid neutron stars from the Brueckner theory with three-body forces and a quark model with chiral mass scaling
- Thermodynamics with density and temperature dependent particle masses and properties of bulk strange quark matter and strangelets
- Thermodynamic consistency, quark mass scaling, and properties of strange matter
- Neutron star equation of state: QMF modeling and applications
- Constraining hadron-quark phase transition parameters within the quark-mean-field model using multimessenger observations of neutron stars
- Interface Effect in QCD Phase Transitions via Dyson-Schwinger Equation Approach
- Massive hybrid stars with a first order phase transition
- Constraining quark-hadron interface tension in the multi-messenger era
- Nucleon effective mass in hot dense matter
- Optimal neutron-star mass ranges to constrain the equation of state of nuclear matter with electromagnetic and gravitational-wave observations
- Constraining the Hadron-Quark Phase Transition Chemical Potential via Astronomical Observation
Cited by in corpus (29)
- Extreme Matter meets Extreme Gravity: Ultra-heavy neutron stars with crossovers and first-order phase transitions
- The slope, the hill, the drop, and the swoosh: Learning about the nuclear matter equation of state from the binary Love relations
- Bayesian inference of strange star equation of state using the GW170817 and GW190425 data
- Quarkyonic stars with isospin-flavor asymmetry
- On the moment of inertia of PSR J0737-3039 A from LIGO/Virgo and NICER
- Interacting and quark matter at finite densities and quark stars
- Insights on the peak in the speed of sound of ultradense matter
- Exploring thermal effects of the hadron-quark matter transition in neutron star mergers
- Structure in the speed of sound: from neutron stars to heavy-ion collisions
- 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
- Testing the phase transition parameters inside neutron stars with the production of protons and lambdas in relativistic heavy-ion collisions
- Gravitational-wave Emission from a Primordial Black Hole Inspiraling inside a Compact Star: a Novel Probe for Dense Matter Equation of State
- A bag model of matter condensed by the strong interaction
- A Bayesian study of quark models in view of recent astrophysical constraints
- Measuring the Hubble constant with coalescences of binary neutron star and neutron star-black hole: bright sirens \& dark sirens
- Speed of Sound for Hadronic and Quark Phases in a Magnetic Field
- Properties of Hybrid Stars with Density Dependent Bag Model
- Variation of delta baryon mass and hybrid star properties in static and rotating conditions
- Scale symmetry and composition of compact star matter
- Bayesian inference of strangeon matter using the measurements of PSR J0437-4715 and GW190814
- Rotating Hybrid Stars with Color-Flavor-Locked Quark Matter
- Neutron Stars and Gravitational Waves: the Key Role of Nuclear Equation of State
- Thermal x-ray studies of neutron stars and the equation of state
- Quark condensate and chiral symmetry restoration in neutron stars
- Bayesian Quantification of Observability and Equation of State of Twin Stars
- Investigating the Impact of Higher-Order Phase Transitions in Binary Neutron-Star Mergers
- Landau quantization and spin polarization of cold magnetized quark matter
- Vetting quark-star models with gravitational waves in the hierarchical Bayesian framework
- Recurring region for neutron-star observables