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Three-body Final State Interaction in η to 3 π

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arxiv 1505.01715 v2 pith:PMHCBWYC submitted 2015-05-07 hep-ph

Three-body Final State Interaction in $\eta \to 3 \pi$

classification hep-ph
keywords chiraldatadecayparametersperturbationtheoryalphaapproach
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We present an unitary dispersive model for the $\eta \to 3 \pi$ decay process based upon the Khuri-Treiman equations which are solved by means of the Pasquier inversion method. The description of the hadronic final-state interactions for the $\eta \to 3\pi$ decay is essential to reproduce the available data and to understand the existing discrepancies between Dalitz plot parameters from experiment and chiral perturbation theory. Our approach incorporates substraction constants that are fixed by fitting the recent high-statistics WASA-at-COSY data for $\eta \to \pi^+ \pi^- \pi^0$. Based on the parameters obtained we predict the slope parameter for the neutral channel to be $\alpha=-0.022\pm 0.004$. Through matching to next-to-leading order chiral perturbation theory we estimate the quark mass double ratio to be $Q=21.4 \pm 0.4$.

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  1. Three-body unitary determination of the $f_1(1285)$ and $f_1(1420)$ pole positions

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    Fitting a spectator-isobar three-body unitary amplitude to BESIII K0S K0S pi0 data yields poles at (1277±2±1)-i(12±1±0) MeV for f1(1285) and (1435±2±7)-i(40±2±1) MeV for f1(1420), with the latter traced to a K Kbar* q...