English

Heavy-Baryon Spectroscopy from Lattice QCD

High Energy Physics - Lattice 2011-01-28 v1

Abstract

We use a four-dimensional lattice calculation of the full-QCD (quantum chromodynamics, the non-abliean gauge theory of the strong interactions of quarks and gluons) path integrals needed to determine the masses of the charmed and bottom baryons. In the charm sector, our results are in good agreement with experiment within our systematics, except for the spin-1/2 Ξcc\Xi_{cc}, for which we found the isospin-averaged mass to be Ξcc\Xi_{cc} to be 3665±17±1478+03665\pm17\pm14^{+0}_{-78} MeV. We predict the mass of the (isospin-averaged) spin-1/2 Ωcc\Omega_{cc} to be 3763±19±2679+133763\pm19\pm26^{+13}_{-79} {MeV}. In the bottom sector, our results are also in agreement with experimental observations and other lattice calculations within our statistical and systematic errors. In particular, we find the mass of the Ωb\Omega_b to be consistent with the recent CDF measurement. We also predict the mass for the as yet unobserved Ξb\Xi^\prime_b to be 5955(27) MeV.

Keywords

Cite

@article{arxiv.1002.4710,
  title  = {Heavy-Baryon Spectroscopy from Lattice QCD},
  author = {Huey-Wen Lin and Saul D. Cohen and Liuming Liu and Nilmani Mathur and Kostas Orginos and Andre Walker-Loud},
  journal= {arXiv preprint arXiv:1002.4710},
  year   = {2011}
}

Comments

Invited talk at Conference of Computational Physics 2009. 3 pages

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