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      The AdS/CFT Correspondence for the Massive Rarita-Schwinger Field

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          Abstract

          The complete solution to the massive Rarita-Schwinger field equation in anti-de Sitter space is constructed, and used in the AdS/CFT correspondence to calculate the correlators for the boundary conformal field theory. It is found that when no condition is imposed on the field solution, there appear two different boundary conformal field operators, one coupling to a Rarita-Schwinger field and the other to a Dirac field. These two operators are seen to have different scaling dimensions, with that of the spinor-coupled operator exhibiting non-analytic mass dependence.

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          Mass spectrum of chiral ten-dimensionalN=2supergravity onS5

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            The shadow operator formalism for conformal algebra. Vacuum expectation values and operator products

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              Field Theory Tests for Correlators in the AdS/CFT Correspondence

              The order g^2 radiative corrections to all 2- and 3-point correlators of the composite primary operators Tr X^k are computed in {\cal N} = 4 supersymmetric Yang-Mills theory with gauge group SU(N). Corrections are found to vanish for all N. For k=2 this is a consequence of known superconformal nonrenormalization theorems, and for general k the result confirms an N-to-infinity, fixed large g^2N supergravity calculation and further conjectures in hep-th/9806074. A 3-point correlator involving {\cal N} = 4 descendents of Tr X^2 is calculated, and its order g^2 contribution also vanishes, giving evidence for the absence of radiative corrections in correlators of descendent operators.
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                Author and article information

                Journal
                10 June 1999
                1999-07-04
                Article
                10.1103/PhysRevD.61.026002
                hep-th/9906077
                882697bc-7ac0-484c-a43f-2d42c2ccf2ba
                History
                Custom metadata
                Phys.Rev. D61 (2000) 026002
                19 pages, LaTeX, Minor typos corrected at beginning of sec. 2
                hep-th

                High energy & Particle physics
                High energy & Particle physics

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