English

Low-lying $s=+1$ Pentaquark states in the Inherent Nodal Structure Analysis

High Energy Physics - Phenomenology 2009-11-10 v3

Abstract

The strangeness s=+1s=+1 pentaquark states as qqqqqˉqqqq\bar{q} clusters are investigated in this letter. Starting from the inherent geometric symmetry, we analyzed the inherent nodal structure of the system. As the nodeless states, the low-lying states are picked out. Then the S-wave state (JP,T)=(1/2,0)(J^P, T)= ({{1/2}}^{-}, 0) and P-wave state (JP,T)=(1/2+,0)(J^P, T)= ({{1/2}}^{+}, 0) may be the candidates of low-lying pentaquark states. By comparing the accessibility of the two states and referring the presently obtained K-N interaction potential, we propose that the quantum numbers of the observed pentaquark state Θ+\Theta^{+} may be (JP,T)=(1/2+,0)(J^P, T)=({{1/2}}^{+}, 0) and L=1.

Keywords

Cite

@article{arxiv.hep-ph/0401197,
  title  = {Low-lying $s=+1$ Pentaquark states in the Inherent Nodal Structure Analysis},
  author = {Yu-xin Liu and Jing-sheng Li and Cheng-guang Bao},
  journal= {arXiv preprint arXiv:hep-ph/0401197},
  year   = {2009}
}

Comments

15 pages, 2 figures, 4 tables. Revised version with detailed description, expanded discussion and reference for the geometric configuration to be proposed being added