Holographic compact stars meet gravitational wave constraints
arXiv:1711.06244 · doi:10.1007/JHEP12(2018)078
Abstract
We investigate a simple holographic model for cold and dense deconfined QCD matter consisting of three quark flavors. Varying the single free parameter of the model and utilizing a Chiral Effective Theory equation of state (EoS) for nuclear matter, we find four different compact star solutions: traditional neutron stars, strange quark stars, as well as two non-standard solutions we refer to as hybrid stars of the second and third kind (HS2 and HS3). The HS2s are composed of a nuclear matter core and a crust made of stable strange quark matter, while the HS3s have both a quark mantle and a nuclear crust on top of a nuclear matter core. For all types of stars constructed, we determine not only their mass-radius relations, but also tidal deformabilities, Love numbers, as well as moments of inertia and the mass distribution. We find that there exists a range of parameter values in our model, for which the novel hybrid stars have properties in very good agreement with all existing bounds on the stationary properties of compact stars. In particular, the tidal deformabilities of these solutions are smaller than those of ordinary neutron stars of the same mass, implying that they provide an excellent fit to the recent gravitational wave data GW170817 of LIGO and Virgo. The assumptions underlying the viability of the different star types, in particular those corresponding to absolutely stable quark matter, are finally discussed at some length.
34 pages, 6 figures; v3: version accepted for publication at JHEP
References in corpus (31)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- Color superconductivity in dense quark matter
- Tidal Love numbers of neutron stars
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- Gravitational-wave constraints on the neutron-star-matter Equation of State
- Constraining the Maximum Mass of Neutron Stars From Multi-Messenger Observations of GW170817
- Using gravitational-wave observations and quasi-universal relations to constrain the maximum mass of neutron stars
- Relativistic theory of tidal Love numbers
- GW170817: Joint Constraint on the Neutron Star Equation of State from Multimessenger Observations
- Neutron-star radius constraints from GW170817 and future detections
- Cold Quark Matter
- Neutron matter at next-to-next-to-next-to-leading order in chiral effective field theory
- Holographic Phase Transitions with Fundamental Matter
- Superconductivity from gauge/gravity duality with flavor
- Cold Nuclear Matter In Holographic QCD
- Holographic Nuclear Physics
- Constraints on interquark interaction parameters with GW170817 in a binary strange star scenario
- Flavor Superconductivity from Gauge/Gravity Duality
- Breaking the sound barrier in AdS/CFT
- Can we distinguish low mass black holes in neutron star binaries?
- Dense Holographic QCD in the Wigner-Seitz Approximation
- Robustness of third family solutions for hybrid stars against mixed phase effects
- Stiff phases in strongly coupled gauge theories with holographic duals
- Relativistic theory of surficial Love numbers
- Merging Strangeon Stars
- I-Love-Q Relations for Neutron Stars in dynamical Chern Simons Gravity
- Uniformly rotating, axisymmetric and triaxial quark stars in general relativity
- Condensed matter physics of a strongly coupled gauge theory with quarks: some novel features of the phase diagram
- Explicit flavor symmetry breaking and holographic compact stars
- The effect of quantum fluctuations in compact star observables
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- Neutron star tidal deformability and equation of state constraints
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- Interpreting Binary Neutron Star Mergers: Describing the Binary Neutron Star Dynamics, Modelling Gravitational Waveforms, and Analyzing Detections
- Inferring neutron star properties from GW170817 with universal relations
- Cool baryon and quark matter in holographic QCD
- Holographic QCD in the Veneziano limit and neutron stars
- Signatures for quark matter from multi-messenger observations
- Holographic modeling of nuclear matter and neutron stars
- Unified weak/strong coupling framework for nuclear matter and neutron stars
- Deconfined, Massive Quark Phase at High Density and Compact Stars: A Holographic Study
- Building a realistic neutron star from holography
- Finite-temperature Equations of State for Neutron Star Mergers
- Dense and Hot QCD at Strong Coupling
- On accretion disks formed in MHD simulations of black hole-neutron star mergers with accurate microphysics
- Transport in strongly coupled quark matter
- Holographic approach to compact stars and their binary mergers
- Holographic quark matter with colour superconductivity and a stiff equation of state for compact stars
- Holographic approach to transport in dense QCD matter
- Phase diagram and compact stars in a holographic QCD model
- Fast ejecta as a potential way to distinguish black holes from neutron stars in high-mass gravitational-wave events
- Exploring thermal effects of the hadron-quark matter transition in neutron star mergers
- Novel color superconducting phases of = 4 super Yang-Mills at strong coupling
- Holographic QCD in the NICER era
- Holographic spontaneous anisotropy
- GW170817 and GW190425 as Hybrid Stars of Dark and Nuclear Matters
- Compact Star of Holographic Nuclear Matter and GW170817
- Gravity dual of a multilayer system
- Low-energy modes in anisotropic holographic fluids
- Brane nucleation instabilities in non-AdS/non-CFT
- Universal relations for compact stars with exotic degrees of freedom
- Radial and Non-Radial Oscillations of Inverted Hybrid Stars
- Neutron stars and stellar mergers as a laboratory for dense QCD matter
- Universal relations for anisotropic interacting quark stars
- Quantum information probes of charge fractionalization in large- gauge theories
- Holographic dense QCD in the Veneziano limit
- Universal Relations For Generic Family Of Neutron Star Equations Of State
- Hybrid stars may have an inverted structure
- Tidal Deformation and Radial Pulsations of Neutron Star with Holographic Multiquark Core
- Conformal symmetry breaking in holographic QCD
- Holographic fundamental matter in multilayered media
- Phase transitions and latent heat in magnetized matter
- Insights Into Neutron Stars From Gravitational Redshifts and Universal Relations
- Vetting quark-star models with gravitational waves in the hierarchical Bayesian framework
- Dark I-Love-Q
- Deriving Neutron Star Equation of State from AdS/QCD
- A holographic study on QCD phase transition and neutron star properties
- Quark stars in - holographic model
- Hot Holographic 2-flavor Quark Star
- Non-perturbative Aspects of Quantum Field Theories from Holography
- Predictions on observing hot holographic quark star with gravitational waves