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arXiv:hep-lat/0503019·v4·High Energy Physics — Lattice

Search for the possible S=+1 Pentaquark states in Quenched Lattice QCD

Toru T. Takahashi🇯🇵 · Takashi Umeda🇯🇵 · Tetsuya Onogi🇯🇵 · Teiji Kunihiro🇯🇵

Abstract

We study spin hadronic states in quenched lattice QCD to search for a possible pentaquark resonance. Simulations are carried out on , , and lattices at =5.7 at the quenched level with the standard plaquette gauge action and the Wilson quark action. We adopt a Dirichlet boundary condition in the time direction for the quark to circumvent the possible contaminations due to the (anti)periodic boundary condition for the quark field, which are peculiar to the pentaquark. By diagonalizing the correlation matrices constructed from two independent operators with the quantum numbers , we successfully obtain the energies of the lowest state and the 2nd-lowest state in this channel. The analysis of the volume dependence of the energies and spectral weight factors indicates that a resonance state is likely to exist slightly above the NK threshold in channel.

Comments: 21 pages, 14 figures, 1 table; v2: "N_eff" in Sec.4 was changed to "N_fit" to avoid the confusion in the notation; v3: The discussions in Sec.6 were made clearer. Sec7,8,9B were slightly modified. Some references were added; v4: accepted version

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