1,004 research outputs found
Chiral symmetry breaking and stability of strangelets
We discuss the stability of strangelets by considering dynamical chiral
symmetry breaking and confinement. We use a
symmetric Nambu--Jona-Lasinio model for chiral symmetry breaking supplemented
by a boundary condition for confinement. It is shown that strangelets with
baryon number can stably exist. For the observables, we
obtain the masses and the charge-to-baryon number ratios of the strangelets.
These quantities are compared with the observed data of the exotic particles.Comment: 10 pages, 9 figures, submitted to Physical Review
Relation between the separable and one-boson-exchange potential for the covariant Bethe-Salpeter equation
We investigate the relation between the rank I separable potential for the
covariant Bethe-Salpeter equation and the one-boson-exchange potential. After
several trials of the parameter choices, it turns out that it is not always
possible to reproduce the phase-shifts calculated from a single term of the
one-boson-exchange potential especially of the -exchange term,
separately by the rank I separable potential. Instead, it is shown that the
separable potential is useful to parameterize the total nucleon-nucleon
interaction.Comment: 10 pages, 8 figures, to appear in J.Phys.
Exotic baryons from a heavy meson and a nucleon
We evaluate a hadronic molecule formed by a heavy meson and a nucleon
respecting heavy quark symmetry. The tensor force of pion exchange potential
plays a dominate role to produce an strong attraction in this system. Solving
coupled channel Schr\"odinger equations for PN and P* N, we find many bound and
resonant states with isospin I=0 while there are few resonances in I=1 state.
The rich structures with I=0 indicate that the spectrum of heavy baryons near
the threshold is influenced by the contributions from such hadron composite
structures.Comment: To appear in the proceedings of The 5th International Workshop on
Charm Physics (Charm 2012
Chiral symmetry breaking and stability of quark droplets
We discuss the stability of strangelets -- quark droplets with strangeness --
in the Nambu--Jona-Lasinio model supplemented by a boundary condition for quark
confinement. Effects of dynamical chiral symmetry breaking are considered
properly inside quark droplets of arbitrary baryon number. We obtain the energy
per baryon number of quark droplets with baryon number from one to thousands.
It is shown that strangelets are not the ground states as compared with nuclei,
though they can be locally stable
Quark condensates in the chiral bag with the NJL interaction
We discuss the quark condensate of the vacuum inside the baryon. We analyze
the 1+1 dimensional chiral bag in analogy with the realistic 3+1 dimensional
one. The Nambu--Jona-Lasinio (NJL) type interaction is used to investigate the
quark condensate in the chiral bag. Considering the strong meson-quark
coupling, we solve the mean field solution to the scalar and pseudoscalar
channels by including the chiral Casimir effects. The self-consistent equation
allows a finite value of the quark condensate and hence a finite dynamical
quark mass inside the bag. It is shown that an approximate Cheshire Cat picture
holds for massive quarks
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