Too massive neutron stars: The role of dark matter?
arXiv:1208.3722 · doi:10.1016/j.astropartphys.2012.07.006
Abstract
The maximum mass of a neutron star is generally determined by the equation of state of the star material. In this study, we take into account dark matter particles, assumed to behave like fermions with a free parameter to account for the interaction strength among the particles, as a possible constituent of neutron stars. We find dark matter inside the star would soften the equation of state more strongly than that of hyperons, and reduce largely the maximum mass of the star. However, the neutron star maximum mass is sensitive to the particle mass of dark matter, and a very high neutron star mass larger than 2 times solar mass could be achieved when the particle mass is small enough. Such kind of dark-matter- admixed neutron stars could explain the recent measurement of the Shapiro delay in the radio pulsar PSR J1614-2230, which yielded a neutron star mass of 2 times solar mass that may be hardly reached when hyperons are considered only, as in the case of the microscopic Brueckner theory. Furthermore, in this particular case, we point out that the dark matter around a neutron star should also contribute to the mass measurement due to its pure gravitational effect. However, our numerically calculation illustrates that such contribution could be safely ignored because of the usual diluted dark matter environment assumed. We conclude that a very high mass measurement of about 2 times solar mass requires a really stiff equation of state in neutron stars, and find a strong upper limit (<= 0.64 GeV) for the particle mass of non-self- annihilating dark matter based on the present model.
Astroparticle Physics (2012) in Press
References in corpus (8)
- Shapiro delay measurement of a two solar mass neutron star
- WIMP Annihilation and Cooling of Neutron Stars
- Compact Stars as Dark Matter Probes
- Mirror particles and mirror matter: 50 years of speculation and search
- Compact stars made of fermionic dark matter
- Estimation of the effect of hyperonic three-body forces on the maximum mass of neutron stars
- Particle Physics Implications for CoGeNT, DAMA, and Fermi
- Protoneutron stars in the Brueckner-Hartree-Fock approach and finite-temperature kaon condensation
Cited by in corpus (55)
- How perturbative QCD constrains the Equation of State at Neutron-Star densities
- Bosonic Dark Matter in Neutron Stars and its Effect on Gravitational Wave Signal
- The dark matter effect on realistic equation of state in neutron stars
- Dark matter admixed neutron stars
- Dark compact objects: an extensive overview
- Dark matter admixed neutron star as a possible compact component in the GW190814 merger event
- Dark matter admixed neutron star properties in the light of X-ray pulse profile observations
- The Second Love Number of Dark Compact Planets and Neutron Stars with Dark Matter
- Jet Luminosity of Gamma-ray Bursts: Blandford-Znajek Mechanism v.s. Neutrino Annihilation Process
- Neutron stars in gravity using realistic equations of state in the light of massive pulsars and GW170817
- (1232) effects in density-dependent relativistic Hartree-Fock theory and neutron stars
- Impacts of dark matter on the curvature of the neutron star
- Tidal Deformability of Fermion-Boson Stars: Neutron Stars Admixed with Ultra-Light Dark Matter
- Study of Dark-Matter Admixed Neutron Stars using the Equation of State from the Rotational Curves of Galaxies
- Tidal Love Numbers of Novel and Admixed Celestial Objects
- Comprehensive study of compact stars with dark matter
- Implications of Feebly Interacting Dark Sector on Neutron Star Properties and Constraints from GW170817
- Gravitational effects of condensed dark matter on strange stars
- Radial oscillations and stability of multiple-fluid compact stars
- Dynamical evolution of dark matter admixed neutron stars
- R-modes as a New Probe of Dark Matter in Neutron Stars
- Feeble DM-SM Interaction via New Scalar and Vector Mediators in Rotating Neutron Stars
- Dark matter effects on the properties of neutron stars: compactness and tidal deformability
- Strange stars in gravity Palatini formalism and gravitational wave echoes from them
- Radial oscillations of quark stars admixed with dark matter
- Neutron Stars and Dark Matter
- Dark matter effects on the properties of neutron stars: optical radii
- Thermal Relaxation of Dark Matter Admixed Neutron Star
- Dense Matter in Neutron Stars with eXTP
- Exotic Compact Objects with Two Dark Matter Fluids
- Solution to the hyperon puzzle using dark matter
- Gravitational wave echoes from compact stars in gravity
- Vector dark boson mediated feeble interaction between fermionic dark matter and strange quark matter in quark stars
- Constraining the mass of fermionic dark matter from its feeble interaction with hadronic matter via dark mediators in neutron stars
- Masquerading hybrid stars with dark matter
- Two-fluid stellar objects in General Relativity: the covariant formulation
- Neutron star mass in dark matter clumps
- Dynamical evolution of fermion-boson stars with realistic equations of state
- Does Dark Matter admixed pulsar exist ?
- Supramassive dark objects with neutron star origin
- Exploring Fermionic Dark Matter Admixed Neutron Stars in the Light of Astrophysical Observations
- Strange stars with a mirror-dark-matter core confronting with the observations of compact stars
- Impact of dark boson mediated feeble interaction between dark matter and hadronic matter on -mode oscillation of neutron stars
- Proposed method of combining continuum mechanics with Einstein Field Equations
- Revealing Dark Matter's Role in Neutron Stars Anisotropy: A Bayesian Approach Using Multi-messenger Observations
- Effect of Scalar Boson on Fermionic Dark Star
- Cooling of dark neutron stars
- Illuminating dark matter admixed in neutron stars with simultaneous mass-radius constraints
- Tidal Deformability as a Probe of Dark Matter in Neutron Stars
- Axion-Like Particle Mediated Dark Matter and Neutron Star Properties in the QHD Model
- Correlation between the curvature and some properties of the neutron star
- Observational bounds on Dark Matter Admixed Neutron Stars from Gravitational Wave Data
- XTE J1814-338 as a strange star admixed with bosonic dark matter
- Strongly Interacting Dark Matter admixed Neutron Stars
- A possible mechanism for over luminous type Ia supernovae explosions inspired by dark matter