activity
20242026
collaborators

8 papers

nucl-th2026

Microscopic Statistical Calculation of Nuclear Level Density Based on Relativistic Density Functional Theory

Zi-Cheng Wang, Peng-Xiang Du, Jian Li +2

A microscopic statistical model based on the relativistic density functional theory (RDFT) is developed to calculate the nuclear level density (NLD). The approach employs self-cons…

nucl-th2026

A Question of Shape: New Mechanism Governing Superheavy Nuclei Survival

A. Rahmatinejad, T. M. Shneidman, G. G. Adamian +3

We demonstrate that hot superheavy nuclei do not retain spherical shapes, as traditionally assumed, but instead equilibrate in deformed, often oblate or triaxial, configurations at…

nucl-th2026

From first to second minimum: Parity-dependent level densities in Pu

A. Rahmatinejad, T. M. Shneidman, N. Jovancevic

We calculate the parity-dependent level density ratios for Pu across a broad range of quadrupole deformations, from the spherical configuration up to the superdeformed…

nucl-th2026

Nuclear molecule of heavy nuclei

T. M. Shneidman, R. G. Nazmitdinov

The model of a nuclear molecule that composed of two heavy nuclei is proposed. To this aim the Hamiltonian of a dinuclear system is derived and diagonalized in the basis of bipolar…

nucl-th2025

Dependence of angular momentum of fission fragments on total kinetic energy in spontaneous fission of Cf

A. Rahmatinejad, T. M. Shneidman, G. G. Adamian +1

A weak dependence of the angular momentum of Ba fragments, produced in the spontaneous fission of Cf, on the total kinetic energy (TKE) was recently observed \cite{…

nucl-th2025

Study of neutron-deficient nucleus 224Np and its α decay by particle-number-conserving method in the framework of deformed shell model

Xiao-Tao He, Kun Huang, T. M. Shneidman +3

The particle-number-conserving (PNC) method in the framework of the deformed shell model (DSM) is employed to study the properties of the newly discovered short-lived neutron-defic…