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Baryonium physics

Zioutas, K. (author)
Adiels, L. (author)
Backenstoss, G. (author)
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Bergstrom, I. (author)
Carius, Staffan (author)
Charalambous, S. (author)
Findeisen, C. (author)
Fransson, K. (author)
Kerek, A. (author)
Pavlopoulos, P. (author)
Repond, J. (author)
Tauscher, L. (author)
Troster, D. (author)
Papadopoulou, Th. (author)
Tracas, N. D. (author)
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Institution of Electrical Engineers (IEE), 1983
1983
English.
In: Proceedings of the 1st Hellenic School on Elementary Particle Physics. - : Institution of Electrical Engineers (IEE). ; , s. 437-466
  • Conference paper (peer-reviewed)
Abstract Subject headings
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  • Various theoretical ideas on nuclear physics, quark models, and the dual topological unitarization lead to the expectation of massive mesons, called baryonium, coupled strongly to the ppmacr channel but weakly to mesons, thus resulting in a virtually high stability, particularly below the ppmacr threshold. Such states are relevant to nuclear physics owing to the fact that the badly explored short-range forces in the NN interactions are just the most relevant ones in the NNmacr systems. From the known NN potential, one is led to expect short-range attraction in NNmacr systems, and this should result in quasinuclear bound states in the vicinity of threshold.

Subject headings

NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

Keyword

duality and dual models
quark confinement
quark models

Publication and Content Type

ref (subject category)
kon (subject category)

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