9,517 research outputs found
Theoretical Overview of the Pentaquark Baryons
A review is given of the theoretical ideas concerning the mysterious
pentaquark baryons proposed during the first year after its discovery. We focus
on the difficulties involved with the constituent quark models and the
discrepancy between the QCD predictions and most of the phenomenological
models.Comment: Review based on the talk given at the YITP Workshop on ``Multi-quark
Hadrons; Four, Five and More?'', held on Feb. 17-19, 2004. To be published in
Progress of Theoretical Physics as an invited pape
Nuclear G-Matrix Elements from Nonlocal Potentials
We study effects of nonlocality in the nuclear force on the G-matrix elements
for finite nuclei. Nuclear G-matrix elements for \O16 are calculated in the
harmonic oscillator basis from a nonlocal potential which models quark exchange
effects between two nucleons. We employ a simple form of potential that gives
the same phase shifts as a realistic local nucleon potential. The G-matrix
elements calculated from the nonlocal potential show moderate increase in
repulsion from those derived from the local potential.Comment: 11 page, LaTeX, 2 PS figures, uses epsf.st
Spin Content of Lambda in QCD Sum Rules
We calculate the isoscalar axial-vector coupling constants of the Lambda
hyperon using the method of QCD sum rules. A determination of these coupling
constants reveals the individual contributions of the u, d and the s quarks to
the spin content of Lambda. Our results for the light-quark contributions are
in agreement with those from experiment assuming flavor SU(3). We also find
that the flavor-SU(3)-breaking effects are small and the contributions from the
u and the d quarks to the Lambda polarization are negatively polarized as in
the flavor-SU(3) limit.Comment: 6 pages, 2 figure
Operator product expansion and the short distance behavior of 3-flavor baryon potentials
The short distance behavior of baryon-baryon potentials defined through
Nambu-Bethe-Salpeter wave functions is investigated using the operator product
expansion. In a previous analysis of the nucleon-nucleon case, corresponding to
the SU(3) channels and , we argued that the potentials
have a repulsive core. A new feature occurs for the case of baryons made up of
three flavors: manifestly asymptotically attractive potentials appear in the
singlet and octet channels. Attraction in the singlet channel was first
indicated by quark model considerations, and recently been found in numerical
lattice simulations. The latter have however not yet revealed asymptotic
attraction in the octet channels; we give a speculative explanation for this
apparent discrepancy.Comment: 11 pages, 2 figure
Decay in the Nambu-Jona-Lasinio Model
We study the decays using the version of
the Nambu-Jona-Lasinio model with the effective nonleptonic weak
interaction. The amplitude is in reasonable agreement with
experimental data. On the other hand, the calculated
amplitudes strongly depend on the mass of the low-lying scalar-isoscalar
meson, and therefore give a strong constraint on the parameters of the
model.Comment: 10 pages, 3 Postscript figures, Talk given at YITP Workshp: From
Hadronic Matter to Quark Matter: Evolving View of Hadronic Matter, Kyoto,
Japan, Oct. 30-Nov. 1, 1994, to be published in Prog. Theor. Phys. Supp
-Meson Decays and Strong Breaking in the Three-Flavor Nambu-Jona-Lasinio Model
We study the and
decays using an extended three-flavor Nambu-Jona-Lasinio model that includes
the 't~Hooft instanton induced interaction. We find that the -meson mass,
the decay width and the
decay width are in good agreement with the experimental values when the
breaking is strong and the flavor singlet-octet mixing angle
is about zero. The effects of the breaking on the baryon
number one and two systems are also studied.Comment: 12 pages, LaTeX, 2 eps figures, Talk given at the Joint
Japan-Australia Workshop on Quarks, Hadrons and Nuclei, Adelaide, Australia,
Nov. 15-24, 199
Negative Parity Baryons in the QCD Sum Rule
Masses and couplings of the negative parity excited baryons are studied in
the QCD sum rule. Separation of the negative-parity spectrum is proposed and is
applied to the flavor octet and singlet baryons. We find that the quark
condensate is responsible for the mass splitting of the ground and the
negative-parity excited states. This is expected from the chiral symmetry and
supports the idea that the negative-parity baryon forms a parity doublet with
the ground state. The meson-baryon coupling constants are also computed for the
excited states in the QCD sum rule. It is found that the \pi NN^* coupling
vanishes in the chiral limit.Comment: 13pp, LaTeX, 1 EPS figure, uses epsf.sty, Talk given by M.O. at
CEBAF/INT workshop "N* physics", Seattle, September (1996), to appear in the
proceeding
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