Bosonic dark matter dynamics in hybrid neutron stars
arXiv:2402.19238 · doi:10.1103/PhysRevD.109.043043
Abstract
This research studies the intricate interplay between dark and baryonic matter within hybrid neutron stars enriched by anisotropic bosonic dark matter halos. Our modelling, guided by the equation of state with a free parameter, reveals diverse mass-radius correlations for these astronomical objects. A pivotal result is the influence of dark matter characteristics - whether condensed or dispersed - on the observable attributes of neutron stars based on their masses. Our investigation into anisotropic models, which offer a notably authentic representation of dark matter anisotropy, reveals a unique low-density core halo profile, distinguishing it from alternative approaches. Insights gleaned from galactic clusters have further refined our understanding of the bosonic dark matter paradigm. Observational constraints derived from the dynamics of galaxy clusters have been fundamental in defining the dark matter particle mass to lie between 0.05 GeV and 0.5 GeV and the scattering length to range from 0.9 fm to 3 fm. Using terrestrial Bose-Einstein condensate experiments, we have narrowed down the properties of bosonic dark matter, especially in the often overlooked 3 to 30 GeV mass range. Our findings fortify the understanding of dark and baryonic matter synergies in hybrid neutron stars, establishing a robust foundation for future astrophysical pursuits.
13 pages, 5 figures, submitted to PRD
References in corpus (35)
- A direct empirical proof of the existence of dark matter
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- Dark Matter Candidates from Particle Physics and Methods of Detection
- A NICER View of the Massive Pulsar PSR J0740+6620 Informed by Radio Timing and XMM-Newton Spectroscopy
- Constraints on the Self-Interaction Cross-Section of Dark Matter from Numerical Simulations of the Merging Galaxy Cluster 1E 0657-5
- The QCD Equation of State to from Lattice QCD
- All static spherically symmetric anisotropic solutions of Einstein's equations
- Dark matter production in the early Universe: beyond the thermal WIMP paradigm
- WIMP Annihilation and Cooling of Neutron Stars
- Revealing the properties of dark matter in the merging cluster MACSJ0025.4-1222
- A class of relativistic stars with a linear equation of state
- Proto-Neutron and Neutron Stars in a Chiral SU(3) Model
- Constraining the Eq. of State of Super-Hadronic Matter from Heavy-Ion Collisions
- Complementarity of dark matter detectors in light of the neutrino background
- Radial pulsations and stability of anisotropic stars with quasi-local equation of state
- Bosonic Dark Matter in Neutron Stars and its Effect on Gravitational Wave Signal
- A New Open-Source Nuclear Equation of State Framework based on the Liquid-Drop Model with Skyrme Interaction
- The dark matter effect on realistic equation of state in neutron stars
- Combining Electromagnetic and Gravitational-Wave Constraints on Neutron-Star Masses and Radii
- Dark matter admixed neutron star as a possible compact component in the GW190814 merger event
- Impacts of dark matter on the -mode oscillation of hyperon star
- Dark matter effects on tidal deformabilities and moment of inertia in a hadronic model with short-range correlations
- Probing neutron-star matter in the lab: similarities and differences between binary mergers and heavy-ion collisions
- Gravitational effects of condensed dark matter on strange stars
- Testing Bose-Einstein Condensate dark matter models with the SPARC galactic rotation curves data
- Condensate dark matter stars
- Dark matter component in hadronic models with short-range correlations
- Magnetic fields in anisotropic relativistic stars
- Neutron Stars and Dark Matter
- Anisotropic Dark Matter Stars
- Repulsive properties of hadrons in lattice QCD data and neutron stars
- A theory of finite-temperature Bose-Einstein condensates in neutron stars
- Double relativistic master polytrope for anisotropic matter
- On anisotropic two-fluid stellar objects in General Relativity
- Anisotropic Approach: Compact star as generalized Model
Cited by in corpus (10)
- Feasibility of dark matter admixed neutron star based on recent observational constraints
- Probing fermionic asymmetric dark matter cores using global neutron star properties
- Exploring Fermionic Dark Matter Admixed Neutron Stars in the Light of Astrophysical Observations
- Multi-Messenger and Cosmological Constraints on Dark Matter through Two-Fluid Neutron Star Modeling
- Effect of Dark matter and -cut potential on radial and non-radial oscillation modes in neutron stars
- Improved Treatment of Bosonic Dark Matter Dynamics in Neutron Stars: Consequences and Constraints
- Observational bounds on Dark Matter Admixed Neutron Stars from Gravitational Wave Data
- Effects of short-range correlations at high densities on neutron stars with and without DM content: role of the repulsive self-interaction
- Slowly rotating condensate dark stars beyond the mean-field approximation
- Intrinsic pressure anisotropy in spherical Proca stars