activity
20202025
collaborators

7 papers

nucl-th2025

Subtracted second Tamm-Dancoff approximation in the relativistic point-coupling model

Deni Vale, Nils Paar

Theoretical description of collective nuclear excitations and astrophysically relevant processes require methods going beyond the Random Phase Approximation (RPA) or Tamm-Dancoff A…

nucl-th2025

Conflation of Ensemble-Learned Nuclear Mass Models for Enhanced Precision

Srikrishna Agrawal, N. Chandnani, T. Ghosh +3

Ensemble learning algorithms, the gradient boosting and bagging regressors, are employed to correct the residuals of nuclear mass excess for a diverse set of six nuclear mass model…

nucl-th2025

Hot pygmy dipole strength in nickel isotopes

Amandeep Kaur, Esra Yüksel, Nils Paar

At finite temperatures, nuclear excitations are significantly modified, most notably through the emergence of additional low-energy dipole strength, which can critically impact ast…

nucl-th2025

Electric and magnetic -ray strength functions at finite-temperature

Amandeep Kaur, Esra Yüksel, Nils Paar

The -ray strength function (SF) is essential for understanding the electromagnetic response in atomic nuclei and modeling astrophysical neutron capture rates. We introduced a…

nucl-th2025

Dipole Polarizability of Finite Nuclei as a Probe of Neutron Stars

P. S. Koliogiannis, E. Yuksel, T. Ghosh +1

Nuclear ground state and collective excitation properties provide a means to probe the nuclear matter equation of state and establish connections between observables in finite nucl…

nucl-th2024

Constraining neutron star properties through parity-violating electron scattering experiments and relativistic point coupling interactions

P. S. Koliogiannis, E. Yuksel, N. Paar

Parity-violating electron scattering experiments on (CREX) and (PREX-2) offer valuable insight into the isovector properties of finite nuclei, providin…