The rotational band structure of the Z = 104 nucleus (256)Rf has been observed up to a tentative spin of 20h using state-of-the-art gamma-ray spectroscopic techniques. This represents the first such measurement in a superheavy nucleus whose stability is entirely derived from the shell-correction energy. The observed rotational properties are compared to those of neighboring nuclei and it is shown that the kinematic and dynamic moments of inertia are sensitive to the underlying single-particle shell structure and the specific location of high-j orbitals. The moments of inertia therefore provide a sensitive test of shell structure and pairing in superheavy nuclei which is essential to ensure the validity of contemporary nuclear models in this...
Nuclei in the middle of the 1f 7/2 shell are shown to have rotational features. Dynamic electromagne...
We used the cranking shell model to investigate the high-spin motions and structures of atomic nucle...
The periodic table is known up to the element Z=118, in a region very difficult to access. An ultima...
The rotational band structure of the Z = 104 nucleus (256)Rf has been observed up to a tentative spi...
The rotational band structure of the Z ¼ 104 nucleus 256Rf has been observed up to a tentative spin ...
The ground state band was recently observed in the superheavy nucleus (256)Rf. We study the rotation...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
The variations of moments of inertia of superdeformed (SD) bands Hg-194(1) and Hg-192(1) With angula...
One of the goals pursued in the present research was to understand the nuclear phenomena (such as ro...
The deviation of nuclear rotational spectra from simple rotational pattern of a symmetric top is exp...
The superheavy nucleus (256)Rf, where rotational band and multi-quasiparticle isomer have been obser...
Using state-of-the-art γ-ray spectroscopic techniques, the first rotational band of a superheavy el...
The omega variation of moments of inertia of superdeformed bands is investigated by a particle-numbe...
The structure of nuclei with Z ~ 100 is investigated systematically by the Cranked Shell Model (CSM)...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
Nuclei in the middle of the 1f 7/2 shell are shown to have rotational features. Dynamic electromagne...
We used the cranking shell model to investigate the high-spin motions and structures of atomic nucle...
The periodic table is known up to the element Z=118, in a region very difficult to access. An ultima...
The rotational band structure of the Z = 104 nucleus (256)Rf has been observed up to a tentative spi...
The rotational band structure of the Z ¼ 104 nucleus 256Rf has been observed up to a tentative spin ...
The ground state band was recently observed in the superheavy nucleus (256)Rf. We study the rotation...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
The variations of moments of inertia of superdeformed (SD) bands Hg-194(1) and Hg-192(1) With angula...
One of the goals pursued in the present research was to understand the nuclear phenomena (such as ro...
The deviation of nuclear rotational spectra from simple rotational pattern of a symmetric top is exp...
The superheavy nucleus (256)Rf, where rotational band and multi-quasiparticle isomer have been obser...
Using state-of-the-art γ-ray spectroscopic techniques, the first rotational band of a superheavy el...
The omega variation of moments of inertia of superdeformed bands is investigated by a particle-numbe...
The structure of nuclei with Z ~ 100 is investigated systematically by the Cranked Shell Model (CSM)...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
Nuclei in the middle of the 1f 7/2 shell are shown to have rotational features. Dynamic electromagne...
We used the cranking shell model to investigate the high-spin motions and structures of atomic nucle...
The periodic table is known up to the element Z=118, in a region very difficult to access. An ultima...