A particle-hole model is developed to describe the excitation spectrum of single lambda hypernuclei and the possible presence of collective effects is explored by making a comparison with the mean-field calculations. Results for the spectra of 12C, 16O, 40Ca, 90Zr and 208Pb single lambda hypernuclei are shown. The comparison with the available experimental data is satisfactory. We find that collective phenomena are much less important in hypernuclei than in ordinary nuclei
We extend shell model for Λ hypernuclei suggested by Gal and Millener by including 2ћω excitations i...
We present results of hypernuclei calculated in the latest quark-meson coupling (QMC) model, where t...
A consistent microscopic model is applied to the calculation of the nucleon emission spectra in the ...
24 pages, 5 eps figures, accepted for publication in Nucl. Phys. AA particle-hole model is developed...
We extend the microscopic particle-rotor model for hypernuclear low-lying states by including the de...
We extend the no-core shell model (NCSM) methodology to incorporate strangeness degrees of freedom a...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
We compute one- and two-nucleon kinetic-energy spectra and opening-angle distributions for the nonme...
A two-frequency shell model is proposed for investigating the structure of hypernuclei starting with...
The electroproduction of selected $p$- and $sd$-shell hypernuclei was studied within a many-body app...
The Λ single-particle energies BΛ of hypernuclei (HN) are calculated microscopically using the Fermi...
In this paper, we present the results of the transport, coalescence and statistical model calculatio...
Abstract A previously derived relativistic energy density functional for nuclei, based on low-ener...
Furnstahl, Serot, and Tang have developed a methodology for constructing an effective lagrangian for...
Having in mind its future extension for theoretical investigations related to charmed nuclei, we dev...
We extend shell model for Λ hypernuclei suggested by Gal and Millener by including 2ћω excitations i...
We present results of hypernuclei calculated in the latest quark-meson coupling (QMC) model, where t...
A consistent microscopic model is applied to the calculation of the nucleon emission spectra in the ...
24 pages, 5 eps figures, accepted for publication in Nucl. Phys. AA particle-hole model is developed...
We extend the microscopic particle-rotor model for hypernuclear low-lying states by including the de...
We extend the no-core shell model (NCSM) methodology to incorporate strangeness degrees of freedom a...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
We compute one- and two-nucleon kinetic-energy spectra and opening-angle distributions for the nonme...
A two-frequency shell model is proposed for investigating the structure of hypernuclei starting with...
The electroproduction of selected $p$- and $sd$-shell hypernuclei was studied within a many-body app...
The Λ single-particle energies BΛ of hypernuclei (HN) are calculated microscopically using the Fermi...
In this paper, we present the results of the transport, coalescence and statistical model calculatio...
Abstract A previously derived relativistic energy density functional for nuclei, based on low-ener...
Furnstahl, Serot, and Tang have developed a methodology for constructing an effective lagrangian for...
Having in mind its future extension for theoretical investigations related to charmed nuclei, we dev...
We extend shell model for Λ hypernuclei suggested by Gal and Millener by including 2ћω excitations i...
We present results of hypernuclei calculated in the latest quark-meson coupling (QMC) model, where t...
A consistent microscopic model is applied to the calculation of the nucleon emission spectra in the ...