Impact of Non-metricity and Matter Source on the Geometry of Anisotropic Spheres
arXiv:2504.21348 · doi:10.1016/j.cjph.2024.11.021
Abstract
This paper delves into the impact of extended symmetric teleparallel theory on anisotropic compact stellar structures. The explicit field equations were formulated by considering a minimum model of this extended gravity. Basically, the Darmois junction conditions are used to determine the unknown constants of metric coefficients. We explore some significant properties of the compact stars under consideration to check their viable existence in this modified framework. The Tolman-Oppenheimer-Volkoff equation assess the equilibrium state of the compact stars. Moreover, the stability analysis is defined by using methods based on sound speed (related to how disturbances propagate in the star) and adiabatic index (related to the thermodynamic behavior of the star). We find that the proposed compact stars in the gravity are physically viable and stable.
30 pages, 10 figures
References in corpus (37)
- Shapiro delay measurement of a two solar mass neutron star
- f(R,T) gravity
- Class of viable modified gravities describing inflation and the onset of accelerated expansion
- Sound Speeds, Cracking and Stability of Self-Gravitating Anisotropic Compact Objects
- The Mass and Radius of the Neutron Star in 4U 1820-30
- Stability of the isotropic pressure condition
- Weyl type gravity, and its cosmological implications
- Spherically symmetric configuration in gravity
- Non-exotic matter wormholes in a trace of the energy-momentum tensor squared gravity
- Physically viable solutions of anisotropic spheres in gravity satisfying the Karmarkar condition
- Anisotropic compact stars in gravity
- gravity models with observational constraints
- Baryogenesis in Gravity
- Matter Bounce Scenario and the Dynamical aspects in f(Q,T) Gravity
- Constraining gravity from energy conditions
- Viable and Stable Compact Stars in Theory
- Influence of Models on the Existence of Anisotropic Self-Gravitating Systems
- Energy conditions in gravity
- Bardeen Stellar Structures with Karmarkar Condition
- Fitting gravity models with a CDM limit using H(z) and Pantheon data
- Existence of Wormhole Solutions in Gravity under Non-commutative Geometries
- Constrained gravity accelerating cosmological model and its dynamical system analysis
- FRW Cosmology in Gravity
- Viable and Stable Compact Stellar Structures in Theory
- Thin-Shell Gravastar Model in Gravity
- Wormhole solutions in gravity with a radial dependent B parameter
- Physical Analysis of Spherical Stellar Structures in Theory
- Non-minimal Coupling of Torsion-matter Satisfying Null Energy Condition for Wormhole Solutions
- Relativistic isotropic stellar model in gravity with Durgapal- IV Metric
- Anisotropic Universe in gravity, a novel study
- Analysis of Cosmic Evolution admitting Garcia-Salcedo Ghost and Generalized Ghost Dark Energy Models
- Bardeen Compact Stars in Modified Gravity with Conformal Motion
- Conformally symmetric wormhole solutions supported by non-commutative geometries in the context of gravity
- Study of Viable Compact Stellar Structures in Non-Riemannian Geometry
- Viscous Chaplygin Gas Models as a Spherical Top-Hat Collapsing Fluids
- Viable Wormhole Structures and Energy Conditions in f(Q,T) Theory
- Stability Analysis of Static Spherical Spacetime in Extended Symmetric Teleparallel Gravity