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Prediction of moment of inertia of rotating nuclei

作     者:Mohd Kh.M.Abu El Sheikh A.A.Okhunov H.Abu Kassim M.U.Khandaker Mohd Kh.M.Abu El Sheikh;A.A.Okhunov;H.Abu Kassim;M.U.Khandaker

作者机构:Department of PhysicsUniversity of Malaya50603 Kuala LumpurMalaysia Department of Science in EngineeringInternational Islamic University Malaya50728 Kuala LumpurMalaysia Namangan Institute of Engineering and Technology160000 NamanganUzbekistan Centre for Biomedical PhysicsSchool of Healthcare and Medical SciencesSunway University47500 Bandar SunwayMalaysia 

出 版 物:《Chinese Physics C》 (中国物理C(英文版))

年 卷 期:2020年第44卷第11期

页      面:179-188页

核心收录:

学科分类:08[工学] 0827[工学-核科学与技术] 082701[工学-核能科学与工程] 

基  金:Supported by the MOHE,Fundamental Research Grant Scheme FRGS19-039-0647 OT-F2-2017/2020 by the Committee for the Coordination of the Development of Science and Technology under the Cabinet of Ministers of the Republic of Uzbekistan 

主  题:moment of inertia hydrodynamical model irrotational motion 

摘      要:In this study,the mathematical expression formulated by Bohr for the moment of inertia of even-even nuclei based on the hydrodynamical model is *** modification pertains to the kinetic energy of the surface oscillations,including the second and third terms of the R-expansion as well as the first term,which had already been modified by ***,this work can be considered a continuation and support of Bohr s hydrodynamic *** procedure yields a Bohr formula to be multiplied by a factor that depends on the deformation *** s(modified)formula is examined by applying it on axially symmetric even-even nuclei with atomic masses ranging between 150 and 190 as well as on some triaxial symmetry *** this paper,the modification of Bohr s formula is discussed,including information about the stability of this modification and the second and third terms of the R-expansion in Bohr s *** results of the calculation are compared with the experimental data and Bohr s results recorded *** results obtained are in good agreement with experimental data,with a ratio of approximately 0.7,and are better than those of the unmodified ones.

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