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- W2078483346 abstract "Nucleon quark wave functions deduced from deep-inelastic scattering are used to calculate baryon mass differences. The Hamiltonian used has a relativistic kinetic-energy operator and spin-dependent two-body oscillator potentials that break SU(6) strongly. With all parameters determined by deep-inelastic scattering fits, the $ensuremath{Delta}(1236)ensuremath{-}N(939)$ mass difference is calculated in good agreement with experiment. The calculation is extended to the low-lying hyperons by introducing a strange-quark mass, fit to the ${ensuremath{Omega}}^{ensuremath{-}}$. Using an SU(3)-breaking spin-spin force determined by the ${ensuremath{Lambda}}^{0}$ magnetic moment (as suggested by quantum chromodynamics), good agreement is found for all low-lying baryon masses." @default.
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- W2078483346 date "1980-01-01" @default.
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- W2078483346 title "Baryon masses from deep-inelastic scattering" @default.
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- W2078483346 doi "https://doi.org/10.1103/physrevd.21.241" @default.
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