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Bulava, J.; Edwards, R.G.; Joo, B.; Richards, D.G.; Engelson, E.; Wallace, S.J.; Lin, H.W.; Morningstar, C.
Deutsches Elektronen-Synchrotron (DESY), Zeuthen (Germany); Hadron Spectrum Collaboration2010
Deutsches Elektronen-Synchrotron (DESY), Zeuthen (Germany); Hadron Spectrum Collaboration2010
AbstractAbstract
[en] The energies of the excited states of the Nucleon, Δ and Ω and are computed in lattice QCD, using two light quarks and one strange quark on anisotropic lattices. The calculation is performed at three values of the light quark mass, corresponding to pion masses mπ=392(4), 438(3) and 521(3) MeV. We employ the variational method with a large basis of interpolating operators enabling six energies in each irreducible representation of the lattice to be distinguished clearly. We compare our calculation with the low-lying experimental spectrum, with which we nd reasonable agreement in the pattern of states. The need to include operators that couple to the expected multi-hadron states in the spectrum is clearly identified. (orig.)
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Apr 2010; 15 p; UMD-DOE--40762-472; JLAB-THY--10-1170; ISSN 0418-9833; 

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BARYONS, CALCULATION METHODS, COMPOSITE MODELS, CONSTRUCTIVE FIELD THEORY, ELEMENTARY PARTICLES, ENERGY LEVELS, FERMIONS, FIELD THEORIES, FUNCTIONS, HADRONS, HYPERONS, MASS, MATHEMATICAL MODELS, MATHEMATICAL OPERATORS, MATHEMATICAL SOLUTIONS, N*BARYONS, NUMERICAL SOLUTION, PARTICLE MODELS, QUANTUM FIELD THEORY, QUANTUM OPERATORS, QUARK MODEL, SPECTRA, STRANGE PARTICLES
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