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A theory of baryon resonances at large N_c

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arxiv 1308.0947 v2 pith:FG7F5TVP submitted 2013-08-05 hep-ph nucl-th

classification hep-phnucl-th
keywords fieldexcitationsmeanquarkresonancesbaryonclassificationcollective
verification ladder T0 review T1 audit T2 compute T3 formal
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At large number of colors, N_c quarks in baryons are in a mean field of definite space and flavor symmetry. We write down the general Lorentz and flavor structure of the mean field, and derive the Dirac equation for quarks in that field. The resulting baryon resonances exhibit an hierarchy of scales: The crude mass is O(N_c), the intrinsic quark excitations are O(1), and each intrinsic quark state entails a finite band of collective excitations that are split as O(1/N_c). We build a (new) theory of those collective excitations, where full dynamics is represented by only a few constants. In a limiting (but unrealistic) case when the mean field is spherically-and flavor-symmetric, our classification of resonances reduces to the SU(6) classification of the old non-relativistic quark model. Although in the real world N_c is only three, we obtain a good accordance with the observed resonance spectrum up to 2 GeV.

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