arXiv · hep-th/0001211
Schwarzschild black hole in the dilatonic domain wall
Abstract
In the dilatonic domain wall model, we study the Schwarzschild black hole as a solution to the Kaluza-Klein (KK) zero mode effective action which is equivalent to the Brans-Dicke (BD) model with a potential. This can describe the large Randall-Sundrum (RS) black hole whose horizon is to be the intersection of the black cigar with the brane. The black cigar located far from the AdS$_5$-horizon is known to be stable, but any explicit calculation for stability of the RS black hole at $z=0$ is not yet performed. Here its stability is investigated against the $z$-independent perturbations composed of odd, even parities of graviton ($h_{μν}$) and BD scalar($h_{44} = 2ϕ$). It seems that the RS black hole is classically unstable because it has a potential instability at wavelength with $λ> 1/(2k)$. However, this is not allowed inside an AdS$_5$-box of the size with $1/(2k)$. Thus the RS black hole becomes stable. The RS black hole can be considered as a stable remnant at $z=0 $ of the black cigar.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Y. S. Myung, H. W. Lee. 2000-12-11. Schwarzschild black hole in the dilatonic domain wall. https://doi.org/10.1103/physrevd.63.064034
Cite the original work for its findings. Save a collection to share your selection of sources.