English

$a_1(1420)$ resonance as a tetraquark state and its isospin partner

High Energy Physics - Phenomenology 2015-05-25 v2 High Energy Physics - Experiment Nuclear Experiment

Abstract

We systematically construct tetraquark currents of IGJPC=11++I^GJ^{PC}=1^-1^{++} and classify them into types A\mathbf{A} (antisymmetric), S\mathbf{S} (symmetric) and M\mathbf{M} (mixed), based on flavor symmetries of diquarks and antidiquarks composing the tetra quark currents. We use tetraquark currents of type M\mathbf{M} to perform QCD sum rule analyses, and find a tetraquark current η5μM\eta^M_{5\mu} with quark contents qsqˉsˉq s\bar q \bar s(q=uq=u or dd) leading to a mass of 1.44±0.081.44 \pm 0.08 GeV consistent with the a1(1420)a_1(1420) state recently observed by the COMPASS collaboration. Our results support tetraquark explanations for both a1(1420)a_1(1420) and f1(1420)f_1(1420), assuming that they are isospin partners. We also study their possible decay patterns. As tetraquark candidates, the possible decay modes of a1(1420)a_1(1420) are SS-wave a1(1420)K(892)Ka_1(1420) \rightarrow K^*(892)K and PP-wave a1(1420)f0(980)πa_1(1420)\rightarrow f_0(980) \pi while the possible decay patterns of f1(1420)f_1(1420) are SS-wave f1(1420)K(892)Kf_1(1420) \rightarrow K^*(892)K and PP-wave f1(1420)a0(980)πf_1(1420) \rightarrow a_0(980) \pi. We speculate that a1(1420)a_1(1420) is partly responsible for the large isospin violation in the η(1405)f0(980)π0\eta(1405)\to f_0(980)\pi_0 decay mode which is reported by BESIII collaboration in the J/ψγ3πJ/\psi\to\gamma 3\pi process.

Keywords

Cite

@article{arxiv.1503.02597,
  title  = {$a_1(1420)$ resonance as a tetraquark state and its isospin partner},
  author = {Hua-Xing Chen and Er-Liang Cui and Wei Chen and T. G. Steele and Xiang Liu and Shi-Lin Zhu},
  journal= {arXiv preprint arXiv:1503.02597},
  year   = {2015}
}

Comments

15 pages, 8 figures. Accepted by Phys. Rev. D