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arXiv:hep-ph/0403093·v1·High Energy Physics — Phenomenology

The Narrow Pentaquark As The First Non-planar Hadron With the Diamond Structure And Negative Parity

Xing-Chang Song🇨🇳 · Shi-Lin Zhu🇨🇳

Abstract

Using the picture of the flux tube model, we propose that the pentaquark as the first candidate of the three-dimensional non-planar hadron with the extremely stable diamond structure. The up and down quarks lie at the corners of the diamond while the anti-strange quark sits in the center. Various un-excited color flux tubes between the five quarks bind them into a stable and narrow color-singlet. Such a configuration allows the lowest state having the negative parity naturally. The decay of the pentaquark into the nucleon and kaon requires the breakup of the non-planar diamond configuration into two conventional planar hadrons, which involves some kind of structural phase transition as in the condensed matter physics. Hence the width of the pentaquark should be narrow despite that it lies above the kaon nucleon threshold. We suggest that future lattice QCD calculation adopt non-planar interpolating currents to explore the underlying structure of the pentaquark.

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