All four-dimensional static, spherically symmetric, two-charge Abelian Kaluza–Klein black holes and their CFT duals
نویسندگان
چکیده
We derive the dual conformal field theory Virasoro algebras from the algebra of conserved diffeomorphism charges for a large class of Abelian Kaluza–Klein black holes. Under certain conditions, such as non-vanishing electric and magnetic monopole charges, the Kaluza–Klein black holes have a Reissner– Nordstrom spacetime structure. For the non-extremal charged Kaluza–Klein black holes, we use the uplifted 6D pure gravity solutions to construct a set of Killing horizon preserving diffeomorphisms. For the (non-supersymmetric) extremal black holes, we take the near-extremal near-horizon (NENH) limit and construct a one-parameter family of diffeomorphisms which preserve the Hamiltonian constraints at spatial infinity. In each case we evaluate the algebra of conserved diffeomorphism charges following Barnich, Brandt and Compère, who used a cohomological approach, and Silva, who employed a covariantLagrangian formalism. At the Killing horizon, it is only Silva’s algebra which acquires a central charge extension and which enables us to recover the Bekenstein–Hawking black hole entropy from the Cardy formula. For the NENH geometry, the extremal black hole entropy is obtained only when the free parameter of the diffeomorphism-generating vector fields is chosen such that the central terms of the two algebras are in agreement. PACS numbers: 04.50.Cd, 04.50.Gh, 04.70.Bw, 11.25.Tq, 11.25.Hf
منابع مشابه
All the Four-Dimensional Static, Spherically Symmetric Solutions of Abelian Kaluza-Klein Theory.
We present the explicit form for all the four dimensional, static, spherically symmetric solutions in (4 + n)-d Abelian Kaluza-Klein theory by performing a subset of SO(2, n) transformations corresponding to four SO(1, 1) boosts on the Schwarzschild solution, supplemented by SO(n)/SO(n − 2) transformations. The solutions are parameterized by the mass M , Taub-Nut charge a, n electric ~ Q and n ...
متن کاملAddendum to Supersymmetric Dyonic Black Holes in Kaluza-Klein Theory
We complete the study of 4-dimensional (4-d), static, spherically symmetric, supersymmetric black holes (BH’s) in Abelian (4+n)-d Kaluza-Klein theory, by showing that for such solutions n electric charges ~ Q ≡ (Q1, ..., Qn) and n magnetic charges ~ P ≡ (P1, ..., Pn) are subject to the constraint ~ P · ~ Q = 0. All such solutions can be obtained by performing the SO(n) rotations, which do not a...
متن کاملSpherically Symmetric Solutions in a New Braneworld Massive Gravity Theory
In this paper, a combination of the braneworld scenario and covariant de Rham-Gabadadze-Tolley (dRGT) massive Gravity theory is proposed. In this setup, the five-dimensional bulk graviton is considered to be massive. The five dimensional nonlinear ghost-free massive gravity theory affects the 3-brane dynamics and the gravitational potential on the brane. Following the solutions with spherical s...
متن کاملGeneralized Kaluza-Klein Black Holes with Squashed Horizons
We present the spacetime of a five-dimensional static black hole within EinsteinMaxwell theory. The solution represents a Kaluza-Klein black hole, whereby the solution is wholly five-dimensional near the horizon, but becomes effectively fourdimensional (with a compact fifth dimension) at the spatial infinity. The black-hole is electrically charged and so has two horizons, with a horizon geometr...
متن کاملExact static solutions in four dimensional Einstein-Maxwell-Dilaton gravity
Classes of exact static solutions in four-dimensional Einstein-MaxwellDilaton gravity are found. Besides of the well-known solutions previously found in the literature, new solutions are presented.It’s shown that spherically symmetric solutions, except the case of charged dilaton black hole, represent globally naked strong curvature singularities. The scalar field is believed to play an importa...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2010