We present shell model calculations for warm rotating nuclei, combining the cranked Nilsson mean field and a residual surface-delta two-body interaction. The model is used to describe the transition from the region of well-defined rotational bands into the region dominated by rotational damping, and the results are in overall agreement with the experimental findings
The excitation spectra of nuclei in the regions 150 < A < 190 and 220 < A < 250 are comm...
The study of damping of rotational motion applying the rotational plane mapping (RPM) method is pres...
The excitation spectra of nuclei in the regions 150 < A < 190 and 220 < A < 250 are comm...
Damping of rotational motion in superdeformed Hg and Dy-region nuclei is studied by means of cranked...
The damping of collective rotational motion is investigated by means of particles-rotor model in whi...
The gamma decay in the quasicontinuum from selected configurations of the rotational nucleus 163Er h...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
The properties of the thermally excited rotational motion up to the region of rotational damping are...
One of the goals pursued in the present research was to understand the nuclear phenomena (such as ro...
A cranked shell model approach for the description of rotational bands in $N\approx Z$ nuclei is for...
Abstract The intrinsic width of (multiparticle-multihole) compound states is an elusive quantity, ...
The damping of collective rotational motion is investigated in rare-earth nucleus $^{168}$Yb by mean...
The {gamma} decay associated with the warm rotation of the superdeformed nuclei {sup 151}Tb and {sup...
The deviation of nuclear rotational spectra from simple rotational pattern of a symmetric top is exp...
This dissertation investigates properties of rotating atomic nuclei. Studies are performed using the...
The excitation spectra of nuclei in the regions 150 < A < 190 and 220 < A < 250 are comm...
The study of damping of rotational motion applying the rotational plane mapping (RPM) method is pres...
The excitation spectra of nuclei in the regions 150 < A < 190 and 220 < A < 250 are comm...
Damping of rotational motion in superdeformed Hg and Dy-region nuclei is studied by means of cranked...
The damping of collective rotational motion is investigated by means of particles-rotor model in whi...
The gamma decay in the quasicontinuum from selected configurations of the rotational nucleus 163Er h...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
The properties of the thermally excited rotational motion up to the region of rotational damping are...
One of the goals pursued in the present research was to understand the nuclear phenomena (such as ro...
A cranked shell model approach for the description of rotational bands in $N\approx Z$ nuclei is for...
Abstract The intrinsic width of (multiparticle-multihole) compound states is an elusive quantity, ...
The damping of collective rotational motion is investigated in rare-earth nucleus $^{168}$Yb by mean...
The {gamma} decay associated with the warm rotation of the superdeformed nuclei {sup 151}Tb and {sup...
The deviation of nuclear rotational spectra from simple rotational pattern of a symmetric top is exp...
This dissertation investigates properties of rotating atomic nuclei. Studies are performed using the...
The excitation spectra of nuclei in the regions 150 < A < 190 and 220 < A < 250 are comm...
The study of damping of rotational motion applying the rotational plane mapping (RPM) method is pres...
The excitation spectra of nuclei in the regions 150 < A < 190 and 220 < A < 250 are comm...