Exploring the viability of charged Spheres admitting non-metricity and matter source
arXiv:2412.01411 · doi:10.1140/epjc/s10052-024-13528-5
Abstract
This research paper investigates the impact of non-metricity and matter source on the geometry of charged spheres in the presence of anisotropic matter configuration. We use a specific model of extended symmetric teleparallel theory to minimize the complexity of the field equations. Moreover, the feasible non-singular solutions are used to examine the interior composition of the charged spheres. The Darmois junction conditions are used to determine the unknown constants in the metric coefficients. We explore some significant properties in the interior of compact stars under consideration to check their viable existence in this modified framework. The equilibrium state of the charged spheres is discussed using the Tolman-Oppenheimer-Volkoff equation and stability is analyzed by sound speed and Herrera cracking approach. We find that the charged spheres in this theoretical framework are physically viable and stable.
17 pages, 12 figures
References in corpus (23)
- Shapiro delay measurement of a two solar mass neutron star
- 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
- Anisotropic compact stars in gravity
- gravity models with observational constraints
- Optical spectroscopy and photometry of SAX J1808.4-3658 in outburst
- Matter Bounce Scenario and the Dynamical aspects in f(Q,T) Gravity
- Constraining gravity from energy conditions
- Viable and Stable Compact Stars in Theory
- Energy conditions in gravity
- Bardeen Stellar Structures with Karmarkar Condition
- Fitting gravity models with a CDM limit using H(z) and Pantheon data
- FRW Cosmology in Gravity
- Novel Gravastar Solutions: Investigating Stability, Energy, and Entropy in the Presence of Cloud of Strings and Quintessence
- Viable and Stable Compact Stellar Structures in Theory
- 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
- Analysis of Cosmic Evolution admitting Garcia-Salcedo Ghost and Generalized Ghost Dark Energy Models
- Study of Viable Compact Stellar Structures in Non-Riemannian Geometry
- Viscous Chaplygin Gas Models as a Spherical Top-Hat Collapsing Fluids