English

Heavy Quarkonium and nonperturbative corrections

High Energy Physics - Phenomenology 2016-09-01 v2

Abstract

We analyse the possible existence of non-perturbative contributions in heavy QˉQ\bar Q Q systems (Qˉ\bar Q and QQ need not have the same flavour) which cannot be expressed in terms of local condensates. Starting from QCD, with well defined approximations and splitting properly the fields into large and small momentum components, we derive an effective lagrangian where hard gluons (in the non-relativistic aproximation) have been integrated out. The large momentum contributions (which are dominant) are calculated using Coulomb type states. Besides the usual condensate corrections, we see the possibility of new non-perturbative contributions. We parametrize them in terms of two low momentum correlators with Coulomb bound state energy insertions EnE_n. We realize that the Heavy Quark Effective lagrangian can be used in these correlators. We calculate the corrections that they give rise to in the decay constant, the bound state energy and the matrix elements of bilinear currents at zero recoil. We study the cut-off dependence of the new contributions and we see that it matches perfectly with that of the large momentum contributions. We consider two situations in detail: i) En>>ΛQCDE_n>> \Lambda_{QCD} (MQM_Q \rightarrow \infty) and ii) En<<ΛQCDE_n << \Lambda_{QCD}, and briefly discuss the expected size of the new contributions in Υ\Upsilon , J/ΨJ/\Psi and BcB_{c}^{\ast} systems.

Keywords

Cite

@article{arxiv.hep-ph/9602345,
  title  = {Heavy Quarkonium and nonperturbative corrections},
  author = {A. Pineda and J. Soto},
  journal= {arXiv preprint arXiv:hep-ph/9602345},
  year   = {2016}
}

Comments

28 pages, LaTeX. Minor changes, some comments and numerical results added. To be published in Phys. Rev. D

R2 v1 2026-07-22T14:29:55.664Z