Anti de Sitter space and holography
Пространство Анти-де Ситтера и голография
1998-01-01
SCID: 54.1/s9xm94gd
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AdS/CFT correspondenceAnti de Sitter spaceN=4 super Yang-MillsType IIB supergravity on AdS5 x S5holography
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Abstract (AI)
Recently, it has been proposed by Maldacena that large N limits of certain conformal field theories in d dimensions can be described in terms of supergravity (and string theory) on the product of d 4-1dimensional AdS space with a compact manifold. Here we elaborate on this idea and propose a precise correspondence between conformal field theory observables and those of supergravity: correlation functions in conformal field theory are given by the dependence of the supergravity action on the asymptotic behavior at infinity. In particular, dimensions of operators in conformal field theory are given by masses of particles in supergravity. As quantitative confirmation of this correspondence, we note that the Kaluza-Klein modes of Type IIB supergravity on AdS^ x S 5 match with the chiral operators of Af = 4 super Yang-Mills theory in four dimensions. With some further assumptions, one can deduce a H'amiltonian version of the correspondence and show that the Af = 4 theory has a large N phase transition related to the thermodynamics of AdS black holes.
Key Findings
1
Kaluza-Klein modes of Type IIB supergravity on AdS5 × S5 match chiral operators of N=4 super Yang–Mills in four dimensions.
2
Operator dimensions in the conformal field theory correspond to particle masses in the dual supergravity description.
3
Proposed precise correspondence: CFT correlation functions equal the dependence of the supergravity action on asymptotic boundary behavior in AdS space.
4
The N=4 super Yang–Mills theory exhibits a large-N phase transition connected to the thermodynamics of AdS black holes.
5
With additional assumptions, a Hamiltonian form of the correspondence can be derived relating CFT dynamics to bulk AdS dynamics.
Research Object
Anti-de Sitter (AdS) space and its product with a compact manifold as the supergravity/string-theory background dual to large-N conformal field theories
Research Subject
The precise holographic correspondence between CFT observables (e.g., operator dimensions, correlation functions) and supergravity quantities (e.g., particle masses, supergravity action dependence on asymptotic boundary data), including matching of Kaluza–Klein modes with chiral operators and thermodynamic/phase-transition implications
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1998-01-01
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