English

Investigating different structures of the Z_{b}(10610) and Z_{b}(10650)

High Energy Physics - Phenomenology 2012-04-19 v3

Abstract

The recently observed narrow resonance Zb(10610)Z_{b}(10610) is examined with the assumptions both as a BBˉB^{*}\bar{B} molecular state and a [bd][bˉuˉ][bd][\bar{b}\bar{u}] tetraquark state with quantum numbers IGJP=1+1+I^{G}J^{P}=1^{+}1^{+}. Possible interpolating currents are constructed to describe the Zb(10650)Z_{b}(10650) as an axial-vector BBˉB^{*}\bar{B}^{*} molecular state or a [bd][bˉuˉ][bd][\bar{b}\bar{u}] tetraquark state. Using QCD sum rules (QCDSR), we consider contributions up to dimension six in the operator product expansion (OPE) at the leading order in αs\alpha_{s}. The mass is obtained as (10.44±0.23)GeV(10.44\pm0.23) GeV for molecular state and (10.50±0.19)GeV(10.50\pm0.19) GeV for tetraquark state, both of which coincide with the Zb(10610)Z_{b}(10610). The results mBBˉ=(10.45±0.31)GeVm_{B^{*}\bar{B}^{*}}=(10.45\pm0.31) GeV and m[bd][bˉuˉ]=(10.48±0.33)GeVm_{[bd][\bar{b}\bar{u}]}=(10.48\pm0.33) GeV are consistent with the Zb(10650)Z_{b}(10650).

Keywords

Cite

@article{arxiv.1107.1343,
  title  = {Investigating different structures of the Z_{b}(10610) and Z_{b}(10650)},
  author = {Chun-Yu Cui and Yong-Lu Liu and Ming-Qiu Huang},
  journal= {arXiv preprint arXiv:1107.1343},
  year   = {2012}
}

Comments

17 pages, 9 figures