A pure geometric approach to stellar structure: Mass–radius relation

Author:

Wanas M. I.1,Ammar Samah A.2,Foda Mona M.1

Affiliation:

1. Astronomy Department, Faculty of Science, Cairo University, Giza, Egypt

2. Mathematics Department, Faculty of Girls, Ain Shams University, Cairo, Egypt

Abstract

This paper represents the second step towards understanding stellar structure using pure geometric tools. It is an attempt to get a theoretical expression for a mass–radius relation. The stellar model used has been obtained as an analytic solution of the field equations of a pure geometric field theory. The method suggested to get this relation is very simple. It depends mainly on a set of differential equations implying the vanishing of all components of a geometric material-energy tensor on a boundary of stellar configuration. The theoretical relation obtained is a linear one [Formula: see text] with one free parameter [Formula: see text] Comparison with observation, using a sample of lower main-sequence stars, members of binary systems, is given. For the primary members [Formula: see text], we get [Formula: see text]. It is worthy of mention that the model obtained is a simple one. Rotation, magnetic field, etc. are not considered in the present treatment. So, the model is far from being complete. It is just a step to show that pure geometric consideration objects can be used to treat problems of stellar structure.

Publisher

World Scientific Pub Co Pte Lt

Subject

Physics and Astronomy (miscellaneous)

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