Abstract

We continue the investigation of mesons in terms of the spectral integral equation initiated before [hep-ph/0510410, hep-ph/0511005] for the bbˉb\bar b and ccˉc\bar c systems: in this paper we consider the light-quark (u,d,su, d,s) mesons with masses M3M\le 3 GeV. The calculations have been performed for the mesons lying on linear trajectories in the (n,M2)(n,M^2)-planes, where nn is the radial quantum number. Our consideration relates to the qqˉq\bar q states with one component in the flavor space, with the quark and antiquark masses equal to each other, such as π(0+)\pi(0^{-+}), ρ(1)\rho(1^{--}), ω(1)\omega(1^{--}), ϕ(1)\phi(1^{--}), a0(0++)a_0(0^{++}), a1(1++)a_1(1^{++}), a2(2++)a_2(2^{++}), b1(1+)b_1(1^{+-}), f2(2++)f_2(2^{++}), π2(2+)\pi_2(2^{-+}), ρ3(3)\rho_3(3^{--}), ω3(3)\omega_3(3^{--}), ϕ3(3)\phi_3(3^{--}), π4(4+)\pi_4(4^{-+}) at n6n\le 6. We obtained the wave functions and mass values of mesons lying on these trajectories. The corresponding trajectories are linear, in agreement with data. We have calculated the two-photon decays πγγ\pi\to \gamma\gamma, a0(980)γγa_0(980)\to \gamma\gamma, a2(1320)γγa_2(1320)\to \gamma\gamma, f2(1285)γγf_2(1285)\to \gamma\gamma, f2(1525)γγf_2(1525)\to \gamma\gamma and radiative transitions ργπ\rho\to\gamma\pi, ωγπ\omega\to\gamma\pi, that agree qualitatively with the experiment. On this basis, we extract the singular part of the interaction amplitude, which corresponds to the so-called "confinement interaction". The description of the data requires the presence of the strong tt-channel singularities for both scalar and vector exchanges.Comment: 48 pages, 24 figure

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