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Theoretische Hadronenphysik/ FAIR

Theoretische Hadronenphysik/ FAIR. from up, down to strange and charm. Matthias F.M. Lutz (GSI). S 11 (1535). Δ(1232). Studying Hadron Structure by Spectroscopy. resonance spectrum. information about interaction/dynamics of constituents. SU(3) classification scheme. Ba Ca. atom.

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Theoretische Hadronenphysik/ FAIR

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  1. Theoretische Hadronenphysik/ FAIR from up, down to strange and charm Matthias F.M. Lutz (GSI)

  2. S11(1535) Δ(1232) Studying Hadron Structure by Spectroscopy resonance spectrum information about interaction/dynamics of constituents SU(3) classification scheme Ba Ca atom nucleon H. Schmieden

  3. Data from COSY, ELSA, MAMI, … Measurement of resonance properties: Partial Wave Analysis U. Thoma

  4. Quark models predict many more states compared to experimental findings Löhring, Metsch, Petry, EPJ A10, 395(2001) N* resonances missing states ? structure ?

  5. Phys. Lett. B 582 (2004)

  6. STRANGENESS and HYPERNUCLEI S Z N MAMI, GSI, FAIR, (KEK, FINUDA, J-PARC) ... the 3rd dimension: towards the Nuclear Chart with Nf= 3 Quark Flavours

  7.  single particle energies Nuclear Matter S = 28 MeV H. Lenske

  8. J. Schaffner-Bielich

  9. The CHARMONIUM Renaissance LATTICE - QCD: POTENTIAL between (infinitely) Heavy Quarks “new” charmonia COUPLED CHANNELS DYNAMICS STRING BREAKING ... a prime case for PANDA @ FAIR W. Weise

  10. C.S. Fischer

  11. Charm mesons from constituent quark model theory exp. T.-J. Kuhn und B. Metsch

  12. beyond quark model Phys. Lett. B582, 39 and Nucl. Phys. A733, 142

  13. arXiv:0710.1545 [hep-ph]

  14. Fäßler, Gutsche, Lyubovitskij, Kovalenko, Ma M.F.M.L. & M. Soyeur

  15.  Ds(0+,1+) Ds(0+,1+) Ds(0+,1+) Ds(0+,1+) M.F.M.L. & M. Soyeur    arXiv:0710.1545 [hep-ph] Ds(0+,1+)

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