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- W2000302288 abstract "Abstract A negatively charged strange hadron can be bound by the electromagnetic interaction in the Coulomb field of a nucleus to form an exotic atom. De-excitation of such an atom occurs with the emission of X-rays whose energies, line widths, and intensities have been measured. Deviations from the electromagnetic level scheme are observed for lower-lying states owing to the strong interaction of a hadron with a nucleus. When the wave function of a hadron begins to overlap with the nuclear density distribution, the hadron undergoes nuclear absorption via the strong interaction. The final outcome of such a process is the formation of a Λ hyperon which may be bound in a nucleus by the strong interaction. An exotic nucleus, or a hyper-nucleus, is thus formed making it possible to study the Λ–nucleon interaction. Excited states of hypernuclei decaying via weak, electromagnetic, or strong interaction have been observed and are extensively studied. Investigation of exotic atoms and hypernuclei provides basic information on the properties of strange hadrons, their interaction with nucleons, and the structure of the nuclear surface." @default.
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- W2000302288 date "1974-05-01" @default.
- W2000302288 modified "2023-10-18" @default.
- W2000302288 title "Exotic bound states of strange hadrons" @default.
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- W2000302288 doi "https://doi.org/10.1080/00107517408210789" @default.
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