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April 18, 2026International Journal of Modern Physics A0 citations

Analyzing Stability of Charged Anisotropic Configurations of Dark Energy Stars in Rastall Gravity

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MSM. SharifTNTayyab NaseerMSMalaika Shoukat

Key Points

  • The aim is to analyze the stability and physical viability of charged anisotropic dark energy stars in Rastall gravity.
  • Established modified field equations based on static spherically symmetric geometry.
  • Utilized two equations of state connecting dark energy and ordinary matter.
  • Applied Finch-Skea and Tolman IV ansatz to derive unique solutions.
  • Implemented junction conditions at the star's boundary to determine constants.
  • Evaluated models with observational data of the star 4U 1538-52 and various parametric values.
  • Both charged stellar models satisfy the necessary criteria for physical viability.
  • The solutions provide a framework for understanding dark energy star configurations under Rastall gravity.
  • Graphical evaluations indicate the stability of the models over a range of parametric values.

Abstract

This paper establishes two distinct solutions for dark energy stars, representing charged spherical configurations within the framework of Rastall gravity. The modified field equations are formulated by considering a static spherically symmetric interior geometry. By using two particular equations of state linking dark energy components with the ordinary matter, we obtain solutions to the field equations. As the system has more unknowns and fewer equations, we use two different models such as Finch-Skea and Tolman IV ansatz to obtain unique solutions. We then use junction conditions at the star’s boundary to calculate the constants for each solution. A class of specific physical conditions are then imposed to check whether the generated models are physically existing. Furthermore, the observed data of a known star 4U 1538-52, along with a range of Rastall parametric values and two distinct charge choices, are employed to graphically evaluate the proposed models. Our analysis concludes that both stellar models meet the necessary criteria for physical viability for specific parametric values.

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Cite This Study

Sharif et al. (2026) studied this question.

synapsesocial.com/papers/69e3216540886becb6540acehttps://doi.org/10.1142/s0217751x26500909
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Also Consider

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  1. 1Role of Non-conserved Gravity Theory on Stability Analysis of Dark Energy Stars2026
  2. 2Charged analog of anisotropic dark energy star in Rastall gravity2024
  3. 3Charged Compact Stars within the Modified Rastall f(ℚ,𝒯 ) Gravity2026
  4. 4Decoupled Charged Anisotropic Spherical Solutions in Rastall Gravity2024
  5. 5Dynamical Evolution of Stable, Regular and Charged Compact Stars in f(R,ϕ) Gravity2026 · 1 citations