Physics – High Energy Physics – High Energy Physics - Theory
Scientific paper
2006-08-02
JHEP 0610:052,2006
Physics
High Energy Physics
High Energy Physics - Theory
17 pages, 1 figure
Scientific paper
10.1088/1126-6708/2006/10/052
We investigate a curved brane-world, inspired by a noncommutative D3-brane, in a type IIB string theory. We obtain, an axially symmetric and a spherically symmetric, (anti) de Sitter black holes in 4D. The event horizons of these black holes possess a constant curvature and may be seen to be governed by different topologies. The extremal geometries are explored, using the noncommutative scaling in the theory, to reassure the attractor behavior at the black hole event horizon. The emerging two dimensional, semi-classical, black hole is analyzed to provide evidence for the extra dimensions in a curved brane-world. It is argued that the gauge nonlinearity in the theory may be redefined by a potential in a moduli space. As a result, D=11 and D=12 dimensional geometries may be obtained at the stable extrema of the potential.
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Professor Satish Uppadhyaa
New geometries and informations
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