Investigations on the nuclear structure in the region around N = 152 deformed shell gap provide anunderstanding of the existence of superheavy elements (Z > 104). Recent experimental studies havelead to the determination of the size and the strength of this gap. Its influence was studied for nucleilike $^{255}_{103}$Lr$_{152}$ and $^{256}_{104}$Rf$_{152}$. Valuable information can be obtained by studying further the evolution of theN = 152 deformed shell gap. To this purpose, the isotopes of $^{257}_{105}$Db and $^{258}_{105}$Db were produced and arethe subject of this work. Even though these two isotopes were previously studied, the currently availabledata are limited and the level schemes are still not fully determined.The $^{257}$Db was ...
The gamma-ray multiplicity and total energy emitted by the heavy nucleus 254No have been measured at...
Understanding the nuclear structure and the underlying interactions is one of the major challenges i...
L'étude de la région des noyaux lourds et superlourds représente un des défis de la physique nucléai...
Investigations on the nuclear structure in the region around N = 152 deformed shell gap provide anun...
International audienceThe superheavy isotope$^{258}$Db was produced in the$^{209}$Bi($^{50}$Ti, 1n)$...
© 2019, SIF, Springer-Verlag GmbH Germany, part of Springer Nature. The superheavy isotope 258 Db w...
The superheavy element with atomic number Z=117 was produced as an evaporation residue in the (48)Ca...
The periodic table is known up to the element Z=118, in a region very difficult to access. An ultima...
The superheavy element with atomic number Z=117 was produced as an evaporation residue in the 48Ca+2...
The superheavy element with atomic number Z=117 was produced as an evaporation residue in the 48Ca+2...
Evolution of nuclear structure in the vicinity of the doubly magic nuclei 132Sn will be discussed in...
The fission process still remains a main factor that determines the stability of the atomic nucleus ...
Exploring the new elements toward the high end of the nuclear chart is one of the most interesting t...
Several new Spontaneous Fission (SF) activities have been found. No definite identification could be...
The gamma-ray multiplicity and total energy emitted by the heavy nucleus 254No have been measured at...
Understanding the nuclear structure and the underlying interactions is one of the major challenges i...
L'étude de la région des noyaux lourds et superlourds représente un des défis de la physique nucléai...
Investigations on the nuclear structure in the region around N = 152 deformed shell gap provide anun...
International audienceThe superheavy isotope$^{258}$Db was produced in the$^{209}$Bi($^{50}$Ti, 1n)$...
© 2019, SIF, Springer-Verlag GmbH Germany, part of Springer Nature. The superheavy isotope 258 Db w...
The superheavy element with atomic number Z=117 was produced as an evaporation residue in the (48)Ca...
The periodic table is known up to the element Z=118, in a region very difficult to access. An ultima...
The superheavy element with atomic number Z=117 was produced as an evaporation residue in the 48Ca+2...
The superheavy element with atomic number Z=117 was produced as an evaporation residue in the 48Ca+2...
Evolution of nuclear structure in the vicinity of the doubly magic nuclei 132Sn will be discussed in...
The fission process still remains a main factor that determines the stability of the atomic nucleus ...
Exploring the new elements toward the high end of the nuclear chart is one of the most interesting t...
Several new Spontaneous Fission (SF) activities have been found. No definite identification could be...
The gamma-ray multiplicity and total energy emitted by the heavy nucleus 254No have been measured at...
Understanding the nuclear structure and the underlying interactions is one of the major challenges i...
L'étude de la région des noyaux lourds et superlourds représente un des défis de la physique nucléai...