4 citations · 4 across the 1 of their papers we have counts for
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Computing Heavy Elements
N. Schunck, A. Baran, M. Kortelainen +9
Reliable calculations of the structure of heavy elements are crucial to address fundamental science questions such as the origin of the elements in the universe. Applications relev…
Chirally symmetric effective field theory for nuclei
Andrzej Staszczak
The Lorentz-invariant nuclear lagrangian of Furnstahl, Serot and Tang (FST) is discussed. The FST lagrangian is derived in terms of an effective field theory and exhibits a nonline…
Microscopic description of complex nuclear decay: multimodal fission
A. Staszczak, A. Baran, J. Dobaczewski +1
Our understanding of nuclear fission, a fundamental nuclear decay, is still incomplete due to the complexity of the process. In this paper, we describe a study of spontaneous fissi…
Toroidal Super-Heavy Nuclei in Skyrme-Hartree-Fock Approach
Andrzej Staszczak, Cheuk-Yin Wong
Within the self-consistent constraint Skyrme-Hartree-Fock+BCS model (SHF+BCS), we found equilibrium toroidal nuclear density distributions in the region of super-heavy elements. Fo…
Bimodal fission in the Skyrme-Hartree-Fock approach
A. Staszczak, J. Dobaczewski, W. Nazarewicz
Spontaneous-fission properties of 256Fm, 258Fm, and 260Fm isotopes are studied within the Skyrme-Hartree-Fock+BCS framework. In the particle-hole channel we take the Skyrme SkM* ef…
Pairing properties of superheavy nuclei
A. Staszczak, J. Dobaczewski, W. Nazarewicz
Pairing properties of even-even superheavy N=184 isotones are studied within the Skyrme-Hartree-Fock+BCS approach. In the particle-hole channel we take the Skyrme energy density fu…