English

Charmed baryon spectroscopy and light flavour symmetry from lattice QCD

High Energy Physics - Lattice 2015-08-14 v2 High Energy Physics - Phenomenology

Abstract

We determine the ground state and first excited state masses of singly and doubly charmed spin 1/2 and 3/2 baryons with positive and negative parity. Configurations with Nf=2+1N_f=2+1 non-perturbatively improved Wilson-clover fermions were employed, with the same quark action also being used for the valence quarks, including the charm. The spectrum is calculated for pion masses in the range Mπ259460M_\pi \sim 259-460 MeV at a lattice spacing a0.075a\sim 0.075 fm. Finite volume effects are studied comparing lattices with two different linear spatial extents (1.8fm1.8\,{\rm fm} and 2.4fm2.4\,{\rm fm}). The physical point is approached from the SU(3) limit keeping the flavour averaged light quark mass fixed. The baryon masses are extrapolated using expansions in the strange-light quark mass difference. Most particles fall into the expected SU(3) multiplets with well constrained extrapolations, the exceptions having a possibly more complex internal structure. Overall agreement is found with experiment for the masses and splittings of the singly charmed baryons. As part of the calculation an analysis of the lower lying charmonium, DD and DsD_s spectra was performed in order to assess discretisation errors. The gross spectra are reproduced, including the Ds0D^*_{s0}, Ds1D_{s1} and D1D_1 mesons, while at this single lattice spacing hyperfine splittings come out 102010-20 MeV too low.

Keywords

Cite

@article{arxiv.1503.08440,
  title  = {Charmed baryon spectroscopy and light flavour symmetry from lattice QCD},
  author = {Gunnar Bali and Sara Collins and Paula Pérez-Rubio},
  journal= {arXiv preprint arXiv:1503.08440},
  year   = {2015}
}

Comments

35 pages, 14 tables, 20 figures. Published version, added figures, small changes to text