61 research outputs found
The Gregory-Laflamme instability for the D2-D0 bound state
The D2-D0 bound state exhibits a Gregory-Laflamme instability when it is
sufficiently non-extremal. If there are no D0-branes, the requisite
non-extremality is finite. When most of the extremal mass comes from D0-branes,
the requisite non-extremality is very small. The location of the threshhold for
the instability is determined using a local thermodynamic analysis which is
then checked against a numerical analysis of the linearized equations of
motion. The thermodynamic analysis reveals an instability of non-commutative
field theory at finite temperature, which may occur only at very long
wavelengths as the decoupling limit is approached.Comment: 19 pages, Latex2e. v2: two refs added. v3: clearer exposition in
section
Black Hole Graybody Factor and Black Hole Entropy
We have proposed the entropy formula of the black hole which is constructed
by the intersecting D1-brane and D5-brane with no momentum, whose
compactification radii are constrained by the surface gravities in
ten-dimensions. We interpret the entropy of the black hole as the statistical
entropy of the effective string living on the D5-brane. We further study the
behavior of the absorption cross-section of the black hole using our entropy
formula.Comment: 15 pages, RevTex, version to appear in PR
Charged and rotating AdS black holes and their CFT duals
Black hole solutions that are asymptotic to or can rotate in two different ways. If the internal sphere rotates
then one can obtain a Reissner-Nordstrom-AdS black hole. If the asymptotically
AdS space rotates then one can obtain a Kerr-AdS hole. One might expect
superradiant scattering to be possible in either of these cases. Superradiant
modes reflected off the potential barrier outside the hole would be
re-amplified at the horizon, and a classical instability would result. We point
out that the existence of a Killing vector field timelike everywhere outside
the horizon prevents this from occurring for black holes with negative action.
Such black holes are also thermodynamically stable in the grand canonical
ensemble. The CFT duals of these black holes correspond to a theory in an
Einstein universe with a chemical potential and a theory in a rotating Einstein
universe. We study these CFTs in the zero coupling limit. In the first case,
Bose-Einstein condensation occurs on the boundary at a critical value of the
chemical potential. However the supergravity calculation demonstrates that this
is not to be expected at strong coupling. In the second case, we investigate
the limit in which the angular velocity of the Einstein universe approaches the
speed of light at finite temperature. This is a new limit in which to compare
the CFT at strong and weak coupling. We find that the free CFT partition
function and supergravity action have the same type of divergence but the usual
factor of 4/3 is modified at finite temperature.Comment: 18 pages, RevTex, 2 figures; v2: references adde
Thermodynamics of R-charged Black Holes in AdS(5) From Effective Strings
It is well known that the thermodynamics of certain near-extremal black holes
in asymptotically flat space can be lifted to an effective string description
created from the intersection of D-branes. In this paper we present evidence
that the semiclassical thermodynamics of near-extremal R-charged black holes in
AdS(5)xS(5) is described in a similar manner by effective strings created from
the intersection of giant gravitons on the S(5). We also present a free fermion
description of the supersymmetric limit of the one-charge black hole, and we
give a crude catalog of the microstates of the two and three-charge black holes
in terms of operators in the dual conformal field theory.Comment: v2: references and typos corrected, 24 pages, latex2
On (multi-)center branes and exact string vacua
Multicenter supergravity solutions corresponding to Higgs phases of
supersymmetric Yang-Mills theories are considered. For NS5 branes we identify
three cases where there is a description in terms of exact conformal field
theories. Other supergravity solutions, such as D3-branes with angular
momentum, are understood as special limits of multicenter ones. Within our
context we also consider 4-dim gravitational multi-instantons.Comment: 9 pages, latex; To be published in the proceedings of the Quantum
Aspects of Gauge Theories, Supersymmetry and Unification, Corfu, Greece,
20-26 September 199
Spinning Dragging Strings
We use the AdS/CFT correspondence to compute the drag force experienced by a
heavy quark moving through a maximally supersymmetric SU(N) super Yang-Mills
plasma at nonzero temperature and R-charge chemical potential and at large 't
Hooft coupling. We resolve a discrepancy in the literature between two earlier
studies of such quarks. In addition, we consider small fluctuations of the
spinning strings dual to these probe quarks and find no evidence of
instabilities. We make some comments about suitable D7-brane boundary
conditions for the dual strings.Comment: 25 pages, 4 figures; v2 refs added; v3 to appear in JHEP, clarifying
comment
RG flows from Spin(7), CY 4-fold and HK manifolds to AdS, Penrose limits and pp waves
We obtain explicit realizations of holographic renormalization group (RG)
flows from M-theory, from E^{2,1} \times Spin(7) at UV to AdS_4 \times
\tilde{S^7} (squashed S^7) at IR, from E^{2,1} \times CY4 at UV to AdS_4 \times
Q^{1,1,1} at IR, and from E^{2,1} \times HK (hyperKahler) at UV to AdS_4 \times
N^{0,1,0} at IR. The dual type IIA string theory configurations correspond to
D2-D6 brane systems where D6 branes wrap supersymmetric four-cycles. We also
study the Penrose limits and obtain the pp-wave backgrounds for the above
configurations. Besides, we study some examples of non-supersymmetric and
supersymmetric flows in five-dimensional gauge theories.Comment: 42 pages, 6 eps figures, typos and misprints correcte
Rotating nonuniform black string solutions
We explore via linearized perturbation theory the Gregory-Laflamme
instability of rotating black strings with equal magnitude angular momenta. Our
results indicate that the Gregory-Laflamme instability persists up to
extremality for all even dimensions between six and fourteen. We construct
rotating nonuniform black strings with two equal magnitude angular momenta in
six dimensions. We see a first indication for the occurrence of a topology
changing transition, associated with such rotating nonuniform black strings.
Charged nonuniform black string configurations in heterotic string theory are
also constructed by employing a solution generation technique.Comment: 36 pages, 10 figures, final versio
New Solution of D=11 Supergravity on S^7 from D=4
A new static partially twisted solution of N=4, SO(4) gauged supergravity in
D=11 is obtained in this work using Cveti\^c et al embedding of four
dimensional into eleven dimensional supergravities. In four dimensions we get
two solutions: an asymptotic one corresponding to and a near horizon
fixed point solution of the form . Hence, while the former
solution has 32 supercharges the latter turns out to have only 4 conserved.
Moreover, we managed to find an exact interpolating solution, thus connecting
the above two. Aiming at a future study of duality for the theory at
hand we derived the Penrose limit of the four dimensional solutions.
Interestingly the pp-wave limit of the near horizon solution suggests itself as
being of the supernumerary supersymmetric type. In D=11 we exhibit the uplift
of the four dimensional solutions: one associated to and the
other to a foliation of , as well as their pp-wave
limits.Comment: 14 pages, LaTe
Thermodynamics of a Kerr Newman de Sitter Black Hole
We compute the conserved quantities of the four-dimensional Kerr-Newman-dS
(KNdS) black hole through the use of the counterterm renormalization method,
and obtain a generalized Smarr formula for the mass as a function of the
entropy, the angular momentum and the electric charge. The first law of
thermodynamics associated to the cosmological horizon of KNdS is also
investigated. Using the minimal number of intrinsic boundary counterterms, we
consider the quasilocal thermodynamics of asymptotic de Sitter
Reissner-Nordstrom black hole, and find that the temperature is equal to the
product of the surface gravity (divided by ) and the Tolman redshift
factor. We also perform a quasilocal stability analysis by computing the
determinant of Hessian matrix of the energy with respect to its thermodynamic
variables in both the canonical and the grand-canonical ensembles and obtain a
complete set of phase diagrams. We then turn to the quasilocal thermodynamics
of four-dimensional Kerr-Newman-de Sitter black hole for virtually all possible
values of the mass, the rotation and the charge parameters that leave the
quasilocal boundary inside the cosmological event horizon, and perform a
quasilocal stability analysis of KNdS black hole.Comment: REVTEX4, 12 pages, 12 figures, references added and some points in
Sec II have been clarified, version to appear in Can. J. Phy
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