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      Three-point Correlation Function of Giant Magnons in the Lunin-Maldacena background

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          Abstract

          We compute semiclassical three-point correlation function, or structure constant, of two finite-size (dyonic) giant magnon string states and a light dilaton mode in the Lunin-Maldacena background, which is the \gamma-deformed, or TsT-transformed AdS_5 x S_{\gamma}^5, dual to N = 1 super Yang-Mills theory. We also prove that an important relation between the structure constant and the conformal dimension, checked for the N = 4 super Yang-Mills case, still holds for the \gamma-deformed string background.

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          On semiclassical computation of 3-point functions of closed string vertex operators in AdS_5 x S^5

          We consider the leading large string tension correction to correlation functions of three vertex operators of particular massive string states in AdS_5 x S^5 string theory. We assume that two of these states are "heavy" carrying large spins (of order string tension) and thus can be treated semiclassically while the third state is "light" having fixed quantum numbers. We study several examples. In the case when the "heavy" states are described by a folded string with large spin in AdS_5 the 3-point function scales as a semiclassical spin parameter of the "heavy" state in power of the string level of the "light" massive string state. We observe similar behavior in the case of "heavy" states which admit a small angular momentum limit which may thus represent correlators of three quantum massive string states.
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            Author and article information

            Journal
            28 June 2011
            Article
            10.1103/PhysRevD.84.126011
            1106.5656
            3b0e518e-0716-43a5-b213-2226525037af

            http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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            11 pages
            hep-th

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