Gravastar model in Randall-Sundrum braneworld
arXiv:1909.11502 · doi:10.1088/1361-6382/ab47d6
Abstract
In this work we derive a gravastar model in Randall-Sundrum II braneworld scenario. Gravastars (or gravitationally vacuum stars) were proposed by Mazur and Mottola as systems of gravitational collapse alternative to black holes. The external region of the gravastar is described by a Schwarzschild space-time, while its internal region is filled by dark energy. In between there is a thin shell surface with ultrarelativistic matter (sometimes referred to as stiff matter). We obtain solutions for some physical quantities of the braneworld gravastars. Those are compared to original Mazur-Mottola results as well as with some gravastar solutions in alternative gravity theories. The consequences of the braneworld setup in gravastar physics is deeply discussed.
12 pages
References in corpus (16)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- f(R,T) gravity
- Modified f(R) gravity consistent with realistic cosmology: from matter dominated epoch to dark energy universe
- Dark energy in modified Gauss-Bonnet gravity: late-time acceleration and the hierarchy problem
- Are f(R) dark energy models cosmologically viable ?
- Avoiding Dark Energy with 1/R Modifications of Gravity
- Low surface brightness galaxies rotation curves in the low energy limit of gravity : no need for dark matter?
- How to tell a gravastar from a black hole
- Ergoregion instability of ultra-compact astrophysical objects
- Can accretion disk properties distinguish gravastars from black holes?
- Gravastar Shadows
- On the ergoregion instability in rotating gravastars
- Tidal deformability and I-Love-Q relations for gravastars with polytropic thin shells
- Where are all the gravastars? Limits upon the gravastar model from accreting black holes
- Time-symmetric initial data of large brane-localized black hole in RS-II model
- Asymmetric dark matter in braneworld cosmology