Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10722955 | Physics Letters B | 2010 | 5 Pages |
Abstract
The octet-singlet η-ηⲠmixing mass term could have a derivative O(p2) term as found in recent analysis of the η-ηⲠsystem. This term gives rise to an additional momentum-dependent pole contribution which is suppressed by a factor mη2/mηâ²2 for η relative to the ηⲠamplitude. The processes with η meson can then be described, to a good approximation, by the momentum-independent mixing mass term which gives rise to a new η-ηⲠmixing angle θP, like the old η-ηⲠmixing angle used in the past, but a momentum-dependent mixing term d, like sin(θ0âθ8) in the two-angle mixing scheme used in the parametrization of the pseudo-scalar meson decay constants in the current literature, is needed to describe the amplitudes with ηâ². In this Letter, we obtain sum rules relating θP and d to the physical vector meson radiative decays with η and ηâ², as done in our previous work for η meson two-photon decay, and with nonet symmetry for the ηⲠamplitude, we obtain a mixing angle θP=â(18.76±3.4)°, d=0.10±0.03 from Ïâηγ and ηâ²âÏγ decays, for Ï, θP=â(15.81±3.1)°, d=0.02±0.03, and for Ï, θP=â(13.83±2.1)°, d=0.08±0.03. A larger value of 0.06±0.02 for d is obtained directly from the nonet symmetry expression for the ηâ²âÏγ amplitude. This indicates that more precise vector meson radiative decay measured branching ratios and higher order SU(3) breaking effects could bring these values for θP closer and allows a better determination of d.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
T.N. Pham,