English

Orientifold Planar Equivalence: The Chiral Condensate

High Energy Physics - Lattice 2010-01-21 v1

Abstract

The recently introduced orientifold planar equivalence is a promising tool for solving non-perturbative problems in QCD. One of the predictions of orientifold planar equivalence is that the chiral condensates of a theory with NfN_f flavours of Dirac fermions in the symmetric (or antisymmetric) representation and NfN_f flavours of Majorana fermions in the adjoint representation have the same large NN value for any value of the mass of the (degenerate) fermions. Assuming the invariance of the theory under charge conjugation, we prove this statement on the lattice for staggered quenched condensates in SU(NN) Yang-Mills in the large NN limit. Then, we compute numerically those quenched condensates for NN up to 8. After separating the even from the odd corrections in 1/N1/N, we are able to show that our data support the equivalence; however, unlike other quenched observables, subleading terms in 1/N1/N are needed for describing the data for the symmetric and antisymmetric representation at NN=3. Possible lessons for the unquenched case are discussed.

Keywords

Cite

@article{arxiv.0809.5015,
  title  = {Orientifold Planar Equivalence: The Chiral Condensate},
  author = {Adi Armoni and Biagio Lucini and Agostino Patella and Claudio Pica},
  journal= {arXiv preprint arXiv:0809.5015},
  year   = {2010}
}

Comments

7 pages, 2 figures, talk presented by B. Lucini at "The XXVI International Symposium on Lattice Field Theory", July 14 - 19, 2008, Williamsburg, Virginia, USA

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