Effect of massive graviton on dark energy star structure
arXiv:2303.04813 · doi:10.1016/j.dark.2023.101354
Abstract
The presence of massive gravitons in the field of massive gravity is considered as an important factor in investigating the structure of compact objects. Hence, we are encouraged to study the dark energy star structure in the Vegh's massive gravity. We consider that the equation of state governing the inner spacetime of the star is the extended Chaplygin gas, and then using this equation of state, we numerically solve the Tolman-Oppenheimer-Volkoff (TOV) equation in massive gravity. In the following, assuming different values of free parameters defined in massive gravity, we calculate the properties of dark energy star such as radial pressure, transverse pressure, anisotropy parameter, and other characteristics. Then, after obtaining the maximum mass and its corresponding radius, we compute redshift and compactness. The obtained results show that for this model of dark energy star, the maximum mass and its corresponding radius depend on the massive gravity's free parameters and anisotropy parameter. These results are consistent with the observational data, and cover the lower mass gap. We also demonstrate that all energy conditions are satisfied for this model, and in the presence of anisotropy, the dark energy star is potentially unstable.
17 pages, 10 figures, 4 tables
References in corpus (24)
- Shapiro delay measurement of a two solar mass neutron star
- A Massive Pulsar in a Compact Relativistic Binary
- Resummation of Massive Gravity
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- Massive Gravity in Three Dimensions
- Sound Speeds, Cracking and Stability of Self-Gravitating Anisotropic Compact Objects
- Echoes of ECOs: gravitational-wave signatures of exotic compact objects and of quantum corrections at the horizon scale
- Neutron-star radius constraints from GW170817 and future detections
- Holography without translational symmetry
- On the Sound Speed in Neutron Stars
- Non-radial oscillations of anisotropic neutron stars in the Cowling approximation
- Causal Limit of Neutron Star Maximum Mass in Gravity in View of GW190814
- Slowly rotating neutron and strange stars in gravity
- Relativistic Anisotropic Fluid Spheres Satisfying a Non-Linear Equation of State
- Dark Energy Stars in Tolman-Kuchowicz spacetime in the context of Einstein Gravity
- Exact dark energy star solutions
- Attractors Static Neutron Star Phenomenology
- Anisotropic compact stars in higher-order curvature theory
- Radial pulsations, moment of inertia and tidal deformability of dark energy stars
- Dark Energy Star in Gravity's Rainbow
- Black hole solutions correspondence between conformal and massive theories of gravity
- Uniqueness of the Inflationary Higgs Scalar for Neutron Stars and Failure of non-inflationary Approximations
- Is the remnant of GW190425 a strange quark star?
- Charged Dark Energy Stars in a Finch-Skea Spacetime
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- Thermodynamics and Optical Properties of Phantom AdS Black Holes in Massive Gravity
- Normal oscillation modes and radial stability of neutron stars with a dark-energy core from the Chaplygin gas
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