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Pomeron interactions from the Einstein-Hilbert action

  • Utrecht University
  • Stony Brook University

Research output: Contribution to journalArticlepeer-review

20 Scopus citations

Abstract

Holographic models of QCD, collectively known as anti-de Sitter/QCD, have been proven useful in deriving several properties of hadrons. One particular feature well reproduced by such models is the Regge trajectories, both for mesons and glueballs. We focus on scalar and tensor glueballs and derive an effective theory for the Pomeron by analytic continuation along the leading trajectory from the tensor glueball. It then follows that the Pomeron, as the tensor glueball itself, should possess a two-index polarization tensor, inherited from the graviton. The three-graviton interaction is deduced from the Einstein-Hilbert action. Using this structure in the cross section of double-Pomeron production of the tensor glueball, we calculate certain angular distributions of production and compare them with those from the CERN WA102 experiment. We find that the agreement is very good for the f2(2300) tensor glueball candidate. At the same time, other tensor states - such as f2(1270) and f2′(1520) - have completely different distributions, which we interpret as a consequence of the fact that they are not glueballs and thus, in our model, unrelated to the gravitational excitations, which are dual to spin-2 glueballs.

Original languageEnglish
Article number045005
JournalPhysical Review D
Volume94
Issue number4
DOIs
StatePublished - Aug 5 2016

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