Interpretation of complexity for spherically symmetric fluid composition within the context of modified gravity theory
arXiv:2505.17424 · doi:10.1016/j.nuclphysb.2025.116852
Abstract
Regardless of the adequate descriptions of complexity in distinct alternative gravity theories, its elaboration in the framework of theory remains uncertain. The orthogonal splitting of the curvature tensor yields the complexity factor as suggested by Herrera \cite {herrera2018new}. To commence our study, the inner spacetime is assumed to be spherically symmetric static composition comprised of the anisotropic fluid. In this context, we derive the modified field equations for the considered theory and take into account the established relationship between the conformal and curvature tensors to interpret the complexity. Furthermore, we determine the correspondence of the mass functions with the complexity factor, represented by a specific scalar . Certain solutions complying with the precedent of diminishing are also evaluated. It is noted that celestial formations having anisotropic and non-uniform compositions of matter assert the utmost complexity. Nevertheless, the spherically symmetric matter distribution may not exhibit complexity in the scenario of vanishing impacts of non-homogenous energy density and anisotropic pressure due to the presence of dark source terms associated with this extended gravity theory.
29 pages, no figure
References in corpus (45)
- f(R) Theories Of Gravity
- f(R) theories
- f(R,T) gravity
- Disappearing cosmological constant in f(R) gravity
- Extra force in modified theories of gravity
- A Statistical Measure of Complexity
- Conditions for the cosmological viability of f(R) dark energy models
- All static spherically symmetric anisotropic solutions of Einstein's equations
- General relativistic polytropes for anisotropic matter: The general formalism and applications
- Definition of complexity for dynamical spherically symmetric dissipative self-gravitating fluid distributions
- General class of wormhole geometries in conformal Weyl gravity
- Newtonian polytropes for anisotropic matter: General framework and applications
- On the way from matter-dominated era to dark energy universe
- Cylindrically Symmetric Relativistic Fluids: A Study Based on Structure Scalars
- Complexity factors for axially symmetric static sources
- Cosmological inviability of gravity
- Quasi-homologous evolution of self-gravitating systems with vanishing complexity factor
- Generalizing the coupling between geometry and matter: gravity
- Tilted Lemaitre-Tolman-Bondi Spacetimes: Hydrodynamic and Thermodynamic Properties
- Definition of Complexity Factor for Self-Gravitating Systems in Palatini Gravity
- Influence of Modification of Gravity on the Complexity Factor of Static Spherical Structures
- Theory and Complex Cosmological Structure
- Existence of Non-singular Stellar Solutions within the context of Electromagnetic Field: A Comparison between Minimal and Non-minimal Gravity Models
- Complexity and Isotropization based Extended Models in the context of Electromagnetic Field: An Implication of Minimal Gravitational Decoupling
- Expansion-Free Evolving Spheres Must Have Inhomogeneous Energy Density Distributions
- Existence of Compact Structures in Gravity
- Expansion-Free Cavity Evolution: Some exact Analytical Models
- Quasi-static evolution of axially and reflection symmetric large-scale configuration
- Cracking of general relativistic anisotropic polytropes
- Uncharged and charged anisotropic like--Durgapal stellar model with vanishing complexity
- The Measure of Complexity in Charged Celestial Bodies in Gravity
- Gravitational cracking and complexity in the framework of gravitational decoupling
- Connecting early and late universe by gravity
- Hyperbolically symmetric static fluids: A general study
- To conserve, or not to conserve: A review of nonconservative theories of gravity
- Complexity analysis of Cylindrically Symmetric Self-gravitating Dynamical System in Theory of Gravity
- Late time cosmological approach in mimetic gravity
- Non-singular anisotropic solutions for strange star model in gravity theory
- Applicability of Modified Gauss-Bonnet Gravity Models on the Existence of Stellar Structures
- Estimating the Role of Bag Constant and Modified Theory on Anisotropic Stellar Models
- Physical validity of anisotropic models derived from isotropic fluid dynamics in theory: An implication of gravitational decoupling
- Tilted shear-free axially symmetric fluids
- Thermodynamics and Perturbative Analysis of Some Newly Developed Theories Under the Scenario of Conserved Energy-momentum Tensor
- Kerr Initial data
- Extending Finch-Skea Isotropic Model to Anisotropic Domain in Modified Gravity