General relativistic polytropes with a repulsive cosmological constant
Zden\v{e}k Stuchl\'ik, Stanislav Hled\'ik, and Jan Novotn\'y

TL;DR
This paper investigates spherically symmetric polytropic fluid configurations in spacetimes with a repulsive cosmological constant, analyzing their structure, stability, and physical properties through numerical and analytical methods.
Contribution
It introduces a comprehensive study of relativistic polytropes with a cosmological constant, including new numerical solutions and analysis of their geometrical and energetic properties.
Findings
Existence of a critical cosmological parameter for equilibrium configurations.
Analytical solutions for uniform density polytropes (=0).
Characterization of polytropes with properties similar to dark matter halos.
Abstract
Spherically symmetric equilibrium configurations of perfect fluid obeying a polytropic equation of state are studied in spacetimes with a repulsive cosmological constant. The configurations are specified in terms of three parameters---the polytropic index , the ratio of central pressure and central energy density of matter , and the ratio of energy density of vacuum and central density of matter . The static equilibrium configurations are determined by two coupled first-order nonlinear differential equations that are solved by numerical methods with the exception of polytropes with corresponding to the configurations with a uniform distribution of energy density, when the solution is given in terms of elementary functions. The geometry of the polytropes is conveniently represented by embedding diagrams of both the ordinary space geometry and the optical…
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