AbstractThe transition quadrupole moments, Qt, of four weakly populated collective bands up to spin ∼65ℏ in 157,158Er have been measured to be ∼11 eb demonstrating that these sequences are associated with large deformations. However, the data are inconsistent with calculated values from cranked Nilsson–Strutinsky calculations that predict the lowest energy triaxial shape to be associated with rotation about the short principal axis. The data appear to favor either a stable triaxial shape rotating about the intermediate axis or, alternatively, a triaxial shape with larger deformation rotating about the short axis. These new results challenge the present understanding of triaxiality in nuclei
High-spin terminating bands in heavy nuclei were first identified in nuclei around 158Er90. While ex...
We report on a seven-dimensional generator coordinate calculation in the two deformation parameters ...
A high-spin rotational band was observed in the N=90 nucleus Yb-160 with moment of inertia and decay...
The transition quadrupole moments. Q(t), of four weakly populated collective bands up to spin simila...
AbstractThe transition quadrupole moments, Qt, of four weakly populated collective bands up to spin ...
The transition quadrupole moments, Qt, of four weakly populated collective bands up to spin ̃65h in ...
A new collective band with high dynamic moment of inertia in 158Er at spins beyond band termination ...
Transition quadrupole moments, Qt, of two ultrahigh-spin, collective structures in 154Er have been m...
Four high-spin collective bands have been populated in Er-154(68)86 via the Pd-110(Ti-48, (4)n gamma...
Using the pairing-deformation-frequency self-consistent total-Routhiansurface and configuration-cons...
Stimulated by recent experimental discoveries, triaxial strongly deformed (TSD) states in (158)Er at...
Background: Whether atomic nuclei can possess triaxial shapes at their ground states is still a subj...
A new frontier of discrete-line gamma-ray spectroscopy at ultrahigh spin has been opened in the rare...
High-spin states in Tm-160,Tm-161 were populated using the Te-128(Cl-37, 5n and 4n) reactions at a b...
In this study, the quadrupole moments of the 166−180Hf, 180−186W and 152−168Sm isotopic chains have ...
High-spin terminating bands in heavy nuclei were first identified in nuclei around 158Er90. While ex...
We report on a seven-dimensional generator coordinate calculation in the two deformation parameters ...
A high-spin rotational band was observed in the N=90 nucleus Yb-160 with moment of inertia and decay...
The transition quadrupole moments. Q(t), of four weakly populated collective bands up to spin simila...
AbstractThe transition quadrupole moments, Qt, of four weakly populated collective bands up to spin ...
The transition quadrupole moments, Qt, of four weakly populated collective bands up to spin ̃65h in ...
A new collective band with high dynamic moment of inertia in 158Er at spins beyond band termination ...
Transition quadrupole moments, Qt, of two ultrahigh-spin, collective structures in 154Er have been m...
Four high-spin collective bands have been populated in Er-154(68)86 via the Pd-110(Ti-48, (4)n gamma...
Using the pairing-deformation-frequency self-consistent total-Routhiansurface and configuration-cons...
Stimulated by recent experimental discoveries, triaxial strongly deformed (TSD) states in (158)Er at...
Background: Whether atomic nuclei can possess triaxial shapes at their ground states is still a subj...
A new frontier of discrete-line gamma-ray spectroscopy at ultrahigh spin has been opened in the rare...
High-spin states in Tm-160,Tm-161 were populated using the Te-128(Cl-37, 5n and 4n) reactions at a b...
In this study, the quadrupole moments of the 166−180Hf, 180−186W and 152−168Sm isotopic chains have ...
High-spin terminating bands in heavy nuclei were first identified in nuclei around 158Er90. While ex...
We report on a seven-dimensional generator coordinate calculation in the two deformation parameters ...
A high-spin rotational band was observed in the N=90 nucleus Yb-160 with moment of inertia and decay...