The Stability of Anisotropic Compact Stars Influenced by Dark Matter under Teleparallel Gravity: An Extended Gravitational Deformation Approach
arXiv:2408.03967 · doi:10.1140/epjc/s10052-025-13849-z
Abstract
In our investigation, we pioneer the development of geometrically deformed strange stars within the framework of teleparallel gravity theory through gravitational decoupling via the complete geometric deformation (CGD) technique. The significant finding is the precise solution for deformed strange star (SS) models achieved through the vanishing complexity factor scenario. Further, we introduce the concept of space-time deformation caused by dark matter (DM) content in DM haloes, leading to perturbations in the metric potentials and components. Mathematically, this DM-induced deformation is achieved through the CGD method, where the decoupling parameter governs the extent of DM influence. To validate our findings, we compare our model predictions with observational constraints, including GW190814 (with a mass range of ) and neutron stars (NSTRs) such as EXO 1785-248 [mass=], 4U 1608-52 [mass=], and PSR J0952-0607 [mass=]. Our investigation delves into the stability of the model by considering causality conditions, Herrera's Cracking Method, the adiabatic index, and the Harrison-Zeldovich-Novikov criterion. We demonstrate that the developed model mimics a wide range of recently observed pulsars. To emphasize its compatibility, we highlight the predicted mass and radius in tabular form by varying both the parameters and . Notably, our findings are consistent with the observation of gravitational waves from the first binary merger event. Furthermore, we compare our results with those obtained for a slow-rotating configuration. In addition to this, we discuss the moment of inertia using the Bejger-Haensel approach in this formulation.
EPJC published version
References in corpus (26)
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- f(R,T) gravity
- Dark torsion as the cosmic speed-up
- Sound Speeds, Cracking and Stability of Self-Gravitating Anisotropic Compact Objects
- The teleparallel equivalent of general relativity
- PSR J0952-0607: The Fastest and Heaviest Known Galactic Neutron Star
- Teleparallel Gravity: From Theory to Cosmology
- The Mass and Radius of the Neutron Star in 4U 1820-30
- Equation of State of a Dense and Magnetized Fermion System
- Teleparallel equivalent of Gauss-Bonnet gravity and its modifications
- Radial pulsations and stability of anisotropic stars with quasi-local equation of state
- Causal Limit of Neutron Star Maximum Mass in Gravity in View of GW190814
- Physical Characteristics and Maximum Allowable Mass of Hybrid Star in the Context of Gravity
- Relativistic Krori-Barua Compact Stars in Gravity
- A simple protocol to construct solutions with vanishing complexity by Gravitational Decoupling
- Investigation of Traversable Wormhole Solutions in Modified Gravity with Scalar Potential
- Energy exchange between relativistic fluids: the polytropic case
- Anisotropic Pressures in Very Dense Magnetized Matter
- Neutron stars in gravity with conserved energy-momentum tensor: Hydrostatic equilibrium and asteroseismology
- Buchdahl quark stars within theory
- Rotating Neutron Stars in F(R) Gravity with Axions
- Einstein's cluster mimicking compact star in the teleparallel equivalent of general relativity
- Geometrically deformed charged anisotropic models in gravity
- Compact star in gravity with Tolman-Kuchowicz metric potential
- A Comprehensive Study of Massive Compact Star Admitting Conformal Motion Under Bardeen Geometry
- Analysis of Dark Matter Halo Structure Formation in -body Simulations with Machine Learning
Cited by in corpus (5)
- Gravitational decoupling and regular hairy black holes: Geodesic stability, quasinormal modes, and thermodynamic properties
- Hair imprints of the gravitational decoupling and hairy black hole spectroscopy
- Scalar Field Static Spherically Symmetric Solutions in Teleparallel Gravity
- Chaplygin and Polytropic gases Teleparallel Robertson-Walker gravity solutions
- Electromagnetic Sources Teleparallel Robertson--Walker -Gravity Solutions