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20172020
most citedOptimizing the relativistic energy density functional with nuclear ground state and collective excitation properties

71 citations · 101 across the 2 of their papers we have counts for

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nucl-th2020

Stellar electron capture rates based on finite temperature relativistic quasiparticle random-phase approximation

A. Ravlic, E. Yuksel, Y. F. Niu +3

The electron capture process plays an important role in the evolution of the core collapse of a massive star that precedes the supernova explosion. In this study, the electron capt…

nucl-th2019

Gamow-Teller excitations at finite temperature: Competition between pairing and temperature effects

E. Yüksel, N. Paar, G. Colò +2

The relativistic and nonrelativistic finite temperature proton-neutron quasiparticle random phase approximation (FT-PNQRPA) methods are developed to study the interplay of the pair…

nucl-th2019

Nuclear excitations within microscopic EDF approaches : pairing and temperature effects on the dipole response

E. Yüksel, G. Colò, E. Khan +1

In the present work, the isovector dipole responses, both in the resonance region and in the low-energy sector, are investigated using the microscopic nuclear Energy Density Functi…

nucl-th201971 cited

Optimizing the relativistic energy density functional with nuclear ground state and collective excitation properties

E. Yuksel, T. Marketin, N. Paar

We introduce a new relativistic energy density functional constrained by the ground state properties of atomic nuclei along with the isoscalar giant monopole resonance energy and d…

nucl-th201730 cited

Multipole excitations in hot nuclei within the finite temperature quasiparticle random phase approximation framework

E. Yüksel, G. Colò, E. Khan +2

The effect of temperature on the evolution of the isovector dipole and isoscalar quadrupole excitations in Ni and Sn nuclei is studied within the fully self-consiste…