543 citations · 660 across the 7 of their papers we have counts for
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Stellar electron-capture rates calculated with the finite-temperature relativistic random-phase approximation
YiFei Niu, Nils Paar, Dario Vretenar +1
We introduce a self-consistent microscopic theoretical framework for modelling the process of electron capture on nuclei in stellar environment, based on relativistic energy densit…
On the isoscalar-isovector splitting of pygmy dipole structures
N. Paar, Y. F. Niu, D. Vretenar +1
The electric dipole response of Ce is investigated using the fully consistent relativistic quasiparticle random phase approximation. By analyzing the isospin structure of t…
Relativistic QRPA calculation of muon capture rates
T. Marketin, N. Paar, T. Niksic +1
The relativistic proton-neutron quasiparticle random phase approximation (PN-RQRPA) is applied in the calculation of total muon capture rates on a large set of nuclei from C…
Comment on "Pygmy dipole response of proton-rich argon nuclei in random-phase approximation and no-core shell model"
N. Paar
In a recent article by C. Barbieri, E. Caurier, K. Langanke, and G. Martínez-Pinedo \cite{Bar.08}, low-energy dipole excitations were studied in proton-rich Ar with rando…
Exotic modes of excitation in atomic nuclei far from stability
N. Paar, D. Vretenar, E. Khan +1
We review recent studies of the evolution of collective excitations in atomic nuclei far from the valley of -stability. Collective degrees of freedom govern essential aspects of…
Correlation energies in the random phase approximation using realistic interactions
C. Barbieri, N. Paar, R. Roth +1
The self-consistent random phase approximation (RPA) based on a correlated realistic nucleon-nucleon interaction is used to evaluate correlation energies in closed-shell nuclei bey…