FIVE-DIMENSIONAL DUST COLLAPSE WITH COSMOLOGICAL CONSTANT
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Publication:3439906
DOI10.1142/S0218271807009309zbMath1115.83324MaRDI QIDQ3439906
D. W. Deshkar, N. N. Saste, Sushant G. Ghosh
Publication date: 21 May 2007
Published in: International Journal of Modern Physics D (Search for Journal in Brave)
Space-time singularities, cosmic censorship, etc. (83C75) Kaluza-Klein and other higher-dimensional theories (83E15)
Related Items (9)
Homogeneous perfect fluid collapse in five-dimensional spherically symmetric spacetime ⋮ Five-dimensional spherical gravitational collapse of anisotropic fluid with cosmological constant ⋮ Instability of collapsing source under expansion-free condition in Einstein Gauss-Bonnet gravity ⋮ Higher dimensional spherically symmetric gravitational collapse ⋮ Models of anisotropic self-gravitating source in Einstein-Gauss-Bonnet gravity ⋮ Dynamics of viscous dissipative collapse with casual approach in string inspired Gauss–Bonnet gravity ⋮ SPHERICALLY SYMMETRIC GRAVITATIONAL COLLAPSE OF A DUST CLOUD IN THIRD-ORDER LOVELOCK GRAVITY ⋮ SPHERICALLY SYMMETRIC GRAVITATIONAL COLLAPSE OF A DUST CLOUD IN EINSTEIN–GAUSS–BONNET GRAVITY ⋮ PHANTOM ACCRETION BY FIVE-DIMENSIONAL CHARGED BLACK HOLE
Cites Work
- Singularity structure of a self-similar Tolman type model in a higher- dimensional spacetime
- Naked singularity of the Vaidya-de Sitter spacetime and cosmic censorship conjecture
- Reply to Unnikrishnan on naked singularities
- Strengths of naked singularities in Tolman-Bondi spacetimes
- Cosmic censorship violation in non-self-similar Tolman-Bondi models
- Naked singularities: Gravitationally collapsing configurations of dust or radiation in spherical symmetry, a unified treatment
- Effect of Inhomogeneity on Cosmological Models
- INHOMOGENEOUS DUST COLLAPSE WITH COSMOLOGICAL CONSTANT
- Measurements of Ω and Λ from 42 High‐Redshift Supernovae
- Spherical Symmetry and Mass-Energy in General Relativity. I. General Theory
- The Large Scale Structure of Space-Time
- Spherically Symmetrical Models in General Relativity
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