Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8182664 | Nuclear Physics A | 2018 | 11 Pages |
Abstract
The dependence of Grodzins systematic as shape fluctuation energy product ESFâB(E2)â and rotational energy product EROTâB(E2)â on the Asymmetry parameter γ0 is carried out in the Z = 50-82, N = 82-126 major shell space. The Asymmetry parameter γ0, varying from 0° to 60°, reflects the change in nuclear structure from prolate to oblate. Strong anomalies are highlighted in the shape transitional isotopes. The product ESFâB(E2)â evolves from low negative values for vibrator nuclei, passing close to zero and then substantially increasing towards triaxial rotor limit with γ0â¼30°. However, the product EROTâB(E2)â decreases as a function of γ0 for all the nuclei approaching towards triaxiality from Z = 50-82, N = 82-126. Anomalies are also noticed for the N>104 region where the product EROTâB(E2)â decreases in zigzag phase for 188-196Pt isotopes corresponding to γ0â¼25-30° and this reflects the breakdown of coherence between rotational energy EROT and excitation strength B(E2)â. The product EROTâB(E2)â indicates the shape phase transition for Pt isotopic chain from spherical to γâsoft to slightly triaxial. We have studied for the first time the role of Grodzins systematic ESF and EROT in the framework of Asymmetric Rotor Model.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
Amit Bindra, H.M. Mittal,