Revisit the isospin violating decays of
arXiv:2109.01333 · doi:10.1103/PhysRevD.104.094003
Abstract
In this work, we revisit the isospin violating decays of in a coupled-channel effective field theory. In the molecular scheme, the is interpreted as the bound state of and channels. In a cutoff-independent formalism, we relate the coupling constants of with the two channels to the molecular wave function. The isospin violating decays of are obtained by two equivalent approaches, which amend some deficiencies about this issue in literature. In the quantum field theory approach, the isospin violating decays arise from the coupling constants of to two di-meson channels. In the quantum mechanics approach, the isospin violating is attributed to wave functions at the origin. We illustrate that how to cure the insufficient results in literature. Within the comprehensive analysis, we bridge the isospin violating decays of to its inner structure. Our results show that the proportion of the neutral channel in is over . As a by-product, we calculate the strong decay width of and radiative one . The strong decay width and radiative decay width are about 30 keV and 10 keV, respectively, for the binding energy from keV to keV.
8 pages, 4 figures. Accepted version by Physical Review D
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