1,285 research outputs found
Kaon properties and cross sections in nuclear medium
Results for the reactions in nuclear matter
of Ref. nucl-th/0004011 are presented. To evaluate the in-medium modification
of the reaction amplitude as a function of the baryonic density we introduce
relativistic, mean-field potentials for the initial, final and intermediate
mesonic and baryonic states in the resonance model. These vector and scalar
potentials were calculated using the quark meson coupling model. Contrary to
earlier work which has not allowed for the change of the cross section in
medium, we find that the data for kaon production at SIS energies are
consistent with a repulsive -nucleus potential.Comment: 5 pages, 3 postscript figures included, uses iopart.cls and
iopart10.clo (included), presented by K.T. at the 5th International
Conference on Strangeness in Quark Matter, July 20 - 25, 2000, Berkeley,
California, to be published in the proceedings, J. Phys. G. An explanation
has been added in Sec. 3 with a new figur
Production of -hypernuclei via the () reaction in a quark-meson coupling model
We study the production of -hypernuclei, Be and
Mg, via the () reaction within a covariant effective
Lagrangian model, employing the bound and proton spinors calculated by
the latest quark-meson coupling model. The present treatment yields the
differential cross sections for the formation of simple s-state
particle-hole states peak at a beam momentum around 1.0 GeV/c with a
value in excess of 1 b.Comment: Accepted version with miner changes, 4 pages, 2 figures, Presented at
the 20th International IUPAP Conference on Few-Body Problems in Physics, 20 -
25 August, 2012, Fukuoka, Japa
- and -hypernuclei
- and -hypernuclei are studied in the quark-meson
coupling (QMC) model. Comparisons are made with the results for
-hypernuclei studied in the same model previously. Although the scalar
and vector potentials felt by the , and in
the corresponding hypernuclei multiplet which has the same baryon numbers are
quite similar, the wave functions obtained, e.g., for state, are
very different. The baryon density distribution in
Pb is much more pushed away from the center than that for
the in Pb due to the Coulomb force. On the contrary,
the baryon density distributions in -hypernuclei are
much larger near the origin than those for the in the corresponding
-hypernuclei due to its heavy mass. It is also found that level
spacing for the single-particle energies is much smaller than that
for the and .Comment: Latex, 14 pages, 4 figures, text was extended, version to appear in
Phys. Rev.
Properties of charmed and bottom hadrons in nuclear medium: Results for and hypernuclei
This reports our recent studies on changes in properties of heavy hadrons
containing at least a charm or a bottom quark in nuclear matter, and that the
results for the and hypernuclei are studied
quantitatively. Comparisons are made with the results for the
hypernuclei studied previously in the same approach. It is shown that although
the scalar and vector potentials for the , and
in the hypernuclei multiplet with the same baryon numbers are quite
similar, the wave functions obtained, e.g., for state, are very
different. The probability density distribution in
Pb is much more pushed away from the center than that for
the in Pb due to the Coulomb force. On the contrary,
the probability density distributions in hypernuclei
are much larger near the origin than those for the in the
hypernuclei due to its heavy mass. A possibility of nuclear bound
(atomic) states is also briefly discussed.Comment: 12 pages, 7 embedded figures, uses PTP-Tex environment (all
included), Invited talk presented at YITP-RCNP Workshop on "Chiral
Restoration in Nuclear Medium", October 7-9, 2002, YITP Kyoto University,
Japan, to be published in the proceeding
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