Study of η η ππ Decays in Large-NC Chiral Perturbation Theory

Abstract

We investigate the η η ππ decays within the framework of large-NC chiral perturbation theory, by calculating the decay amplitudes up to next-to-next-to-leading order in a simultaneous expansion in powers of external momenta, quark masses, and 1/NC. Projecting the amplitudes onto partial waves allows us to implement a unitarization procedure to account for the S- and D-wave ππ final-state interactions. The relevant low-energy constants are determined by fitting our theoretical results to the precise experimental data from the A2 collaboration. A comparison of fits with and without ππ final-state interactions demonstrates that including these effects significantly improves the agreement of our theoretical predictions with the experimental measurements. Consequently, the Dalitz-plot parameters are extracted as a=-0.085(18)stat(4)syst, b=-0.081(10)stat(6)syst, and d=-0.045(6)stat(8)syst. Our results provide therefore a refined theoretical description of the η η ππ decay dynamics.

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