English

Multiquark picture for Sigma(1620)

Nuclear Theory 2015-06-26 v2

Abstract

In this work we report on a new QCD sum rule analysis to predict masses of the excited baryon states (e.g. Sigma(1620) and Lambda(1405)) by using multiquark interpolating fields ((qqˉ)(qqq)(q\bar{q})(qqq)). For the Sigma(1620) we consider the KˉN\bar{K}N, πΣ\pi\Sigma, and πΛ\pi\Lambda (I=1) multiquark interpolating fields. The calculated mass from those multiquark states is about 1.592 GeV. For the Lambda(1405) we first show the result using the π+Σ+π0Σ0+πΣ+\pi^+\Sigma^- + \pi^0\Sigma^0 + \pi^-\Sigma^+ (I=0) multiquark interpolating field, and compare the calculated mass to that of our previous result using the π0Σ0\pi^0\Sigma^0 multiquark state. We then show that the mass 1.405 GeV is well reproduced when using the KˉN\bar{K}N (I=0) multiquark state. The uncertainties in our sum rules are also discussed.

Keywords

Cite

@article{arxiv.nucl-th/9808044,
  title  = {Multiquark picture for Sigma(1620)},
  author = {Seungho Choe},
  journal= {arXiv preprint arXiv:nucl-th/9808044},
  year   = {2015}
}

Comments

revtex, 12 pages, 9 figures; extended version. references and figures added. results unchanged

R2 v1 2026-07-22T18:44:42.226Z