Fully-strange tetraquark states with the exotic quantum numbers JPC = 0+- and 2+-

Abstract

We study the fully-strange tetraquark states with the exotic quantum numbers JPC = 0+- and 2+-. We construct their corresponding diquark-antidiquark interpolating currents, and apply the QCD sum rule method to calculate both their diagonal and off-diagonal correlation functions. The obtained results are used to construct some mixing currents that are nearly non-correlated, from which we extract the masses of the lowest-lying states to be M0+- = 2.45+0.33-0.44 GeV and M2+- = 3.07+0.25-0.33 GeV. We apply the Fierz rearrangement to transform the diquark-antidiquark currents to be the combinations of meson-meson currents, and the obtained Fierz identities indicate that these two states may be searched for in the P-wave φ(1020) f0(1710)/φ(1020) f2(1525) ( φ K K / φ π π) channels.

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