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Heavy Quark Hadronic Lagrangian for S-wave Quarkonium

High Energy Physics - Phenomenology 2016-09-01 v2

Abstract

We use Heavy Quark Effective Theory (HQET) techniques to parametrize certain non-perturbative effects related to quantum fluctuations that put both heavy quark and antiquark in quarkonium almost on shell. The large off-shell momentum contributions are calculated using Coulomb type states. The almost on-shell momentum contributions are evaluated using an effective 'chiral' lagrangian which incorporates the relevant symmetries of the HQET for quarks and antiquarks. The cut-off dependence of both contributions matches perfectly. The decay constants and the matrix elements of bilinear currents at zero recoil are calculated. The new non-perturbative contributions from the on-shell region are parametrized by a single constant. They turn out to be O(α2/ΛQCDan)O(\alpha^2/\Lambda_{QCD} a_{n}), ana_{n} being the Bohr radius and α\alpha the strong coupling constant, times the non-perturbative contribution coming from the multipole expansion (gluon condensate). We discuss the physical applications to Υ\Upsilon, J/ΨJ/\Psi and BcB_{c} systems.

Keywords

Cite

@article{arxiv.hep-ph/9409216,
  title  = {Heavy Quark Hadronic Lagrangian for S-wave Quarkonium},
  author = {A. Pineda and J. Soto},
  journal= {arXiv preprint arXiv:hep-ph/9409216},
  year   = {2016}
}

Comments

38 pages, TeX, general rewritten version with minor changes in physical outcomes, to appear in Phys. Rev. D