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The neutron anomaly in the gamma N --> eta N cross section through the looking glass of the flavour SU(3) symmetry

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abstract

We study the implications of the flavour SU(3) symmetry for various interpretations of the neutron anomaly in the $\gamma N\to\eta N$ cross section. We show that the explanation of the neutron anomaly due to interference of known N(1535) and N(1650) resonances implies that N(1650) resonance should have a huge coupling to $\phi$-meson -- at least 5 times larger than the corresponding $\rho^0$ coupling. In terms of quark degrees of freedom this means that the well-known N(1650) resonance must be a "cryptoexotic pentaquark"-- its wave function should contain predominantly an $s\bar s$ component. It turns out that the "conventional" interpretation of the neutron anomaly by the interference of known resonances metamorphoses into unconventional physics picture of N(1650).

fields

hep-ph 1

years

2024 1

verdicts

CONDITIONAL 1

representative citing papers

Pentaquarks and Maxim V. Polyakov

hep-ph · 2024-11-20 · conditional · novelty 3.0

A review argues that Diakonov-Petrov-Polyakov's narrow-width Theta+ pentaquark prediction remains viable, identifying N*(1685) as the antidecuplet partner and citing LEPS/DIANA data as support.

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  • Pentaquarks and Maxim V. Polyakov hep-ph · 2024-11-20 · conditional · none · ref 76 · internal anchor

    A review argues that Diakonov-Petrov-Polyakov's narrow-width Theta+ pentaquark prediction remains viable, identifying N*(1685) as the antidecuplet partner and citing LEPS/DIANA data as support.