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- W2089944146 abstract "A dynamical quark model of hadrons is constructed in terms of the usual triplet of fractionally charged spin-textonehalf{} quarks ($q$). They have a light mass ($ensuremath{approx}300$ MeV) and obey Fermi-Dirac statistics. In approximate nonrelativistic terms, the quark interactions are assumed to be described by a long-range effective single-particle Hartree potential with infinitely rising walls and by a strong short-range Yukawa-type one between quark pairs. These combine to prevent single-quark emission from a hadron and to give the observed early scaling and the asymptotic electromagnetic form factors $ensuremath{sim}frac{1}{{t}^{2}}$. The energy-momentum propagating in the field between the interacting quarks is idealized as a virtual particle (the core of the baryon) so that the center of mass of the three quarks in the baryon and of the $qoverline{q}$ in the meson is not constrained. Implications of this model are discussed---in particular, the baryon wave functions and energy spectrum, the form-factor behavior, the Adler anomaly for ${ensuremath{pi}}^{0}ensuremath{rightarrow}2ensuremath{gamma}$ decay, and the hadronic interactions." @default.
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- W2089944146 date "1972-12-01" @default.
- W2089944146 modified "2023-10-16" @default.
- W2089944146 title "Dynamical Model of Hadrons with Fermion Quarks" @default.
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- W2089944146 doi "https://doi.org/10.1103/physrevd.6.3248" @default.
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