4.8 Article

Crossing Symmetric Dispersion Relations for Mellin Amplitudes

期刊

PHYSICAL REVIEW LETTERS
卷 126, 期 21, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.126.211602

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  1. J. C. Bose fellowship of the DST
  2. Department of Atomic Energy, Government of India [RTI4001]

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The study establishes a firm foundation for conformal field theories by utilizing manifestly crossing symmetric dispersion relations, resolving contact term ambiguities. The new approach employs locality constraints to replace the requirement of crossing symmetry in the usual fixed-t dispersion relation, showing that the sum rules based on two channel dispersion relations and the present dispersion relations are identical.
We consider manifestly crossing symmetric dispersion relations for Mellin amplitudes of scalar four point correlators in conformal field theories. This allows us to set up the nonperturbative Polyakov bootstrap for the conformal field theories in Mellin space on a firm foundation, thereby fixing the contact term ambiguities in the crossing symmetric blocks. Our new approach employs certain locality constraints replacing the requirement of crossing symmetry in the usual fixed-t dispersion relation. Using these constraints, we show that the sum rules based on the two channel dispersion relations and the present dispersion relations are identical. Our framework allows us to connect with the conceptually rich picture of the Polyakov blocks being identified with Witten diagrams in anti-de Sitter space. We also give two sided bounds for Wilson coefficients for effective field theories in anti-de Sitter space.

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