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      Gauge theory duals of black hole – black string transitions of gravitational theories on a circle

      , ,
      Journal of Physics: Conference Series
      IOP Publishing

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          Topological quantum field theory

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            Supergravity and The Large N Limit of Theories With Sixteen Supercharges

            , , (2009)
            We consider field theories with sixteen supersymmetries, which includes U(N) Yang-Mills theories in various dimensions, and argue that their large N limit is related to certain supergravity solutions. We study this by considering a system of D-branes in string theory and then taking a limit where the brane worldvolume theory decouples from gravity. At the same time we study the corresponding D-brane supergravity solution and argue that we can trust it in certain regions where the curvature (and the effective string coupling, where appropriate) are small. The supergravity solutions typically have several weakly coupled regions and interpolate between different limits of string-M-theory.
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              Black Strings and p-Branes are Unstable

              We investigate the evolution of small perturbations around black strings and branes which are low energy solutions of string theory. For simplicity we focus attention on the zero charge case and show that there are unstable modes for a range of time frequency and wavelength in the extra \(10-D\) dimensions. These perturbations can be stabililized if the extra dimensions are compactified to a scale smaller than the minimum wavelength for which instability occurs and thus will not affect large astrophysical black holes in four dimensions. We comment on the implications of this result for the Cosmic Censorship Hypothesis.
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                Author and article information

                Journal
                Journal of Physics: Conference Series
                J. Phys.: Conf. Ser.
                IOP Publishing
                1742-6588
                1742-6596
                December 31 2013
                December 31 2013
                December 31 2013
                : 462
                : 012022
                Article
                10.1088/1742-6596/462/1/012022
                42f32820-74b7-4542-9cdb-dfad13cae1b0
                © 2013

                http://iopscience.iop.org/info/page/text-and-data-mining

                http://creativecommons.org/licenses/by/3.0/

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