AdS/CFT Correspondence and Quotient Space Geometry
Yi-hong Gao
Abstract
We consider a version of the AdSd+1/CFTd correspondence, in which the bulk space is taken to be the quotient manifold AdSd+1 /Γ with a fairly generic discrete group Γ acting isometrically on AdSd+1. We address some geometrical issues concerning the holographic principle and the UV/IR relations. It is shown that certain singular structures on the quotient boundary Sd/Γ can affect the underlying physical spectrum. In particular, the conformal dimension of the most relevant operators in the boundary CFT can increase as Γ becomes ``large''. This phenomenon also has a natural explanation in terms of the bulk supergravity theory. The scalar two-point function is computed using this quotient version of the AdS/CFT correspondence, which agrees with the expected result derived from conformal invariance of the boundary theory.
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