Isotopic Symmetry Breaking in the η(1405) → f0(980)π0 → π+π–π0. Decay through a \(K\bar K\) Loop Diagram and the Role of Anomalous Landau Thresholds


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Abstract

Anomalous isotopic symmetry breaking in the η(1405) → f0(980)π0 → π+π–π0 decay through a mechanism featuring anomalous Landau thresholds in the form of logarithmic triangle singularities, i.e., through the \(\eta (1405) \to (K*\bar K + \bar K*K) \to ({K^ + }{K^ - } + {K^0}{\bar K^0}){\pi ^0} \to {f_0}(980){\pi ^0} \to {\pi ^ + }{\pi ^ - }{\pi ^0}\) transition, has been analyzed. It has been shown that this effect can be correctly quantified only by taking into account the nonzero K* width. Different scales of isotopic symmetry breaking associated with the K+K0 mass difference are compared.

About the authors

N. N. Achasov

Laboratory of Theoretical Physics, Sobolev Institute of Mathematics, Siberian Branch

Author for correspondence.
Email: achasov@math.nsc.ru
Russian Federation, Novosibirsk, 630090

G. N. Shestakov

Laboratory of Theoretical Physics, Sobolev Institute of Mathematics, Siberian Branch

Email: achasov@math.nsc.ru
Russian Federation, Novosibirsk, 630090

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