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arXiv:1212.4951·v2·Nuclear Theory

Mesonic and non-mesonic branching ratios of K^- absorption in the nuclear medium

Takayasu Sekihara🇯🇵 · Junko Yamagata-Sekihara🇯🇵 · Daisuke Jido🇯🇵 · Yoshiko Kanada-En'yo🇯🇵

Abstract

The branching ratios of K^- absorption at rest in nuclear matter are evaluated from the K^- self-energy by using the chiral unitary approach for the s-wave \bar{K} N amplitude. We find that both the mesonic and non-mesonic absorption potentials are dominated by the \Lambda(1405) contributions. We also observe that the mesonic absorption ratio [\pi ^{-} \Sigma ^{+}] / [\pi ^{+} \Sigma ^{-}] increases as a function of nuclear density due to the interference between \Lambda(1405) and the I=1 non-resonant background, which is consistent with experimental results. The fraction of the non-mesonic absorption is evaluated to be about 30 % at the saturation density. The branching ratios of the K^- absorption at rest into deuteron and 4He are also calculated.

Comments: 4 pages, 3 figures, talk given at XI International Conference on Hypernuclear and Strange Particle Physics (HYP2012), Barcelona, Spain, 1-5 October 2012

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