The particle-number conserving (PNC) treatment for the cranked shell model with monopole and quadrupole pairing interactions is used to investigate the microscopic mechanism of backbending in nuclear moments of inertia of Yb isotopes, including the variation with rotational frequency omega of the occupation n(mu) of each cranked orbital It, the contributions to angular momentum alignment from each unclosed major shell, and the individual contributions j(x)(mu) from the particle in the orbital mu, and the interference j(x)(muv) between the particles in orbitals It and v. PNC calculations show that the occurrence of sharp backbending in some nuclei (e.g., Yb-170), comes mainly from contribution of the interference effect between a high j intr...
Using the particle-number conserving method for treating the cranked shell model, the microscopic me...
The structure of nuclei with Z ~ 100 is investigated systematically by the Cranked Shell Model (CSM)...
The microscopic mechanism of the identical odd- and even-mass number nuclear bands in normally defor...
The K = 1/2 rotational band in Yb-171 is investigated using the particle number conserving (PNC) met...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
The variations in moments of inertia (J((2)) and J((1))) with rotational frequency for the series of...
The variations of moments of inertia of superdeformed (SD) bands Hg-194(1) and Hg-192(1) With angula...
Using the particle-number conserving method for treating the cranked shell model, the microscopic me...
The microscopic mechanism of the variation with rotational frequency of moments of inertia and their...
Accurate particle-number-conserving calculation shows that in a single-j model the yrast-yrare inter...
We provide new insights into backbending phenomenon within the symmetry-adapted framework which natu...
The experimental one-, three-, and five-quasiparticle bands in Ta-179 are analyzed by the particle-n...
Rotational bands of No-253 and Md-251 are studied by the cranked shell model with particle-number co...
An accurate particle-number-conserving calculation shows that in a single-j (j = 13/2) model the yra...
The microscopic mechanism of the identical odd- and even-mass number nuclear bands in normally defor...
Using the particle-number conserving method for treating the cranked shell model, the microscopic me...
The structure of nuclei with Z ~ 100 is investigated systematically by the Cranked Shell Model (CSM)...
The microscopic mechanism of the identical odd- and even-mass number nuclear bands in normally defor...
The K = 1/2 rotational band in Yb-171 is investigated using the particle number conserving (PNC) met...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
The variations in moments of inertia (J((2)) and J((1))) with rotational frequency for the series of...
The variations of moments of inertia of superdeformed (SD) bands Hg-194(1) and Hg-192(1) With angula...
Using the particle-number conserving method for treating the cranked shell model, the microscopic me...
The microscopic mechanism of the variation with rotational frequency of moments of inertia and their...
Accurate particle-number-conserving calculation shows that in a single-j model the yrast-yrare inter...
We provide new insights into backbending phenomenon within the symmetry-adapted framework which natu...
The experimental one-, three-, and five-quasiparticle bands in Ta-179 are analyzed by the particle-n...
Rotational bands of No-253 and Md-251 are studied by the cranked shell model with particle-number co...
An accurate particle-number-conserving calculation shows that in a single-j (j = 13/2) model the yra...
The microscopic mechanism of the identical odd- and even-mass number nuclear bands in normally defor...
Using the particle-number conserving method for treating the cranked shell model, the microscopic me...
The structure of nuclei with Z ~ 100 is investigated systematically by the Cranked Shell Model (CSM)...
The microscopic mechanism of the identical odd- and even-mass number nuclear bands in normally defor...