The experimental one-, three-, and five-quasiparticle bands in Ta-179 are analyzed by the particle-number conserving (PNC) method for the cranked shell model with pairing interaction, in which the particle-number is conserved and the blocking effects are considered exactly. Once the quasiparticle configurations, particularly those of the high-K three- and five-quasi particle bands. are determined, the experimental moments of inertia and their variations with rotational frequencies can he reproduced very well by PNC calculations without any free parameter. (C) 2008 Elsevier B.V. All rights reserved.Physics, NuclearSCI(E)0ARTICLE19-3281
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)...
Within the framework of the particle-number conserving (PNC) formalism, one-quasiparticle and low-ly...
The experimental one-, three-, and five-quasiparticle bands in Lu-177 are analyzed by the particle-n...
Using the particle-number conserving method for treating the cranked shell model, the microscopic me...
The experimental high-K 2- and 3-quasiparticle bands of well deformed rare-earth nuclei are analyzed...
The series of high-K multiquasiparticle bands in Hf-172,Hf-173,Hf-174,Hf-175 are investigated using ...
Using the Particle-number Conserving (PNC) method for treating the cranked shell model, the high K m...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
Using the particle-number conserving method for treating the cranked shell model, the microscopic me...
Using the particle-number conserving (PNC) method for treating the cranked shell model, the bandhead...
The K = 1/2 rotational band in Yb-171 is investigated using the particle number conserving (PNC) met...
Using the Particle-number Conserving (PNC) method for treating the cranked shell model, the high K m...
The variations of moments of inertia of superdeformed (SD) bands Hg-194(1) and Hg-192(1) With angula...
Using the particle-number conserving (PNC) method for treating the cranked shell model, the microsco...
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)...
Within the framework of the particle-number conserving (PNC) formalism, one-quasiparticle and low-ly...
The experimental one-, three-, and five-quasiparticle bands in Lu-177 are analyzed by the particle-n...
Using the particle-number conserving method for treating the cranked shell model, the microscopic me...
The experimental high-K 2- and 3-quasiparticle bands of well deformed rare-earth nuclei are analyzed...
The series of high-K multiquasiparticle bands in Hf-172,Hf-173,Hf-174,Hf-175 are investigated using ...
Using the Particle-number Conserving (PNC) method for treating the cranked shell model, the high K m...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
Using the particle-number conserving method for treating the cranked shell model, the microscopic me...
Using the particle-number conserving (PNC) method for treating the cranked shell model, the bandhead...
The K = 1/2 rotational band in Yb-171 is investigated using the particle number conserving (PNC) met...
Using the Particle-number Conserving (PNC) method for treating the cranked shell model, the high K m...
The variations of moments of inertia of superdeformed (SD) bands Hg-194(1) and Hg-192(1) With angula...
Using the particle-number conserving (PNC) method for treating the cranked shell model, the microsco...
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)...
Within the framework of the particle-number conserving (PNC) formalism, one-quasiparticle and low-ly...