Please use this identifier to cite or link to this item: https://hdl.handle.net/10321/5407
Title: Diffusive and dynamical radiating stars with realistic equations of state
Authors: Brassel, Byron P.
Maharaj, Sunil D.
Goswami, Rituparno
Keywords: Equations of state;Generalized Vaidya spacetimes;Radiating stars;0105 Mathematical Physics;0201 Astronomical and Space Sciences;0206 Quantum Physics;Nuclear & Particles Physics;5101 Astronomical sciences;5107 Particle and high energy physics
Issue Date: Mar-2017
Publisher: Springer Science and Business Media LLC
Source: Brassel, B.P., Maharaj, S.D. and Goswami, R. 2017. Diffusive and dynamical radiating stars with realistic equations of state. General Relativity and Gravitation. 49(3): 1-22. doi:10.1007/s10714-017-2202-2
Journal: General Relativity and Gravitation; Vol. 49, Issue 3 
Abstract: 
We model the dynamics of a spherically symmetric radiating dynamical star with three spacetime regions. The local internal atmosphere is a two-component system consisting of standard pressure-free, null radiation and an additional string fluid with energy density and nonzero pressure obeying all physically realistic energy conditions. The middle region is purely radiative which matches to a third region which is the Schwarzschild exterior. A large family of solutions to the field equations are presented for various realistic equations of state. We demonstrate that it is possible to obtain solutions via a direct integration of the second order equations resulting from the assumption of an equation of state. A comparison of our solutions with earlier well known results is undertaken and we show that all these solutions, including those of Husain, are contained in our family. We then generalise our class of solutions to higher dimensions. Finally we consider the effects of diffusive transport and transparently derive the specific equations of state for which this diffusive behaviour is possible.
URI: https://hdl.handle.net/10321/5407
ISSN: 0001-7701
1572-9532 (Online)
DOI: 10.1007/s10714-017-2202-2
Appears in Collections:Research Publications (Applied Sciences)

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