Rotational Ground-State Bands of ¹⁶⁸Hf Nucleus
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This paper has been explained to study the rotational arrangement of even-even 168Hf isotope using the phenomenological fitting, Sood’s semi-empirical formula. The rotational energies from the calculated values were compared to the experimental data. The result shows that in 168Hf, calculated energies fit the experimental values to a remarkable degree of accuracy.
References
-
A. Bohr and B. R. Mottelson, “Collective and Individual-Particle Aspects of Nuclear Structure,” Kgl. Danske Videnskab. Selskab, Mat-fys. Medd, 27(16) 1-174, 1953.
Google Scholar
1
-
E. Feenberg, “Semi-empirical Theory of the Nuclear Energy Surface,” Revs. Mod. Phys., 19, 239, 1947.
Google Scholar
2
-
A. E. S. Green and N. A. Engler, Mass Surfaces, Phys. Rev. 91, 40 1953.
Google Scholar
3
-
M. A. Preston, R. K. Bhaduri, Structure of the Nucleus, Addison-Wesley Publishing Company, 1975.
Google Scholar
4
-
J. H. Jett, D. A. Lind, Rotational states of 158Dy, 164Er, 168Yb and 174Hf excited by evaporation reactions, Nucl. Phys. A, 155(1), 182-204, 1970.
Google Scholar
5
-
O. panel, Z. Jdair, J. Housni, A. Inchaouh,M. Khouaja, H.Krim, M. Chakir, M.Fiak, M.Mouadil, Y.Elabssaoui, M.Ferricha-alami, Rotational bands studies of the 169Er nucleus , Nucl. Phys. A 992, 121639, 2019.
Google Scholar
6
-
M. Shimada, Y. Fujioka, S. Tagami, and R. Shimizu, Rotational motion of triaxially deformed nuclei studied by the microscopic angular-momentum-projection method, Phys. Rev. C 97, 024318, 2018.
Google Scholar
7
-
S. K. Ghorui, P. K. Raina, A.K. Singh, Z. Nigk, S.K. Patra, P.K Rath, CK. Praharaj, Rotational Bands and Electromagnetic Transitions of some even- even Neodymium Nuclei in J-Projected Hartree-Fock Model, Int. J. Mod. Phys. E 21(07), 1250070, 2012.
Google Scholar
8
-
Huda H. Kassim, Fadhil I. Sharrad, I Hossain. Calculation of some of the nuclear properties of even-even 172-176Hf isotopes under frame work of interacting Boson Model (IBM-1), J. Nat. Sci. Foun., 46(1), 3-10, 2018.
Google Scholar
9
-
Huda H. Kassim, Fadhil I. Sharrad, I Hossain, Nuclear structure of even 178-182Hf isotopes under frame work of interacting Boson Model (IBM-1). Iranian J. Sci. & Tech. (IJST), 42, 993-999, 2018.
Google Scholar
10
-
Ø. Saethre, S. A. Hjorth, A. Johnson, S. Jägare, H. Ryde, and Z. Szymański, Angular Velocity Expansions of Nuclear Rotational Energies, Nucl. Phys. A., 207, 486-512, 1973.
Google Scholar
11
-
A. Johnson and Z. Szymański, Nuclear Rotation at High Angular Velocities, Physics Reports, 7(4), 181-222, 1973.
Google Scholar
12
-
F. S. Stephens Jr, R. M. Diamond and I. Perlman, Phys. Rev. Lett. 3, 435, 1959.
Google Scholar
13
-
R.J. Singla and H. S. Sahota, The mixing of ground-state rotational and gamma and beta vibrational bands in the region A ≥ 228, Nuovo Cimento A, 75(4):344-352, 1983.
Google Scholar
14
-
P. C. Sood, Comparative study of two parameters Models for Predicting Rotational Energies in Even-Even Nuclei, Nuclear Data A, 4, 281-300, 1968.
Google Scholar
15
-
A. Kumar and M. R. Gunye, The Yrast States of The Even Hafnium Isotopes 166-172Hf, Ref. AIX-11-524281; EDB-80-125662, J. Phys. G: Nucl. Phys. 6,.229–240, 1980.
Google Scholar
16
-
I. Hossain & Hewa Y. Abdullah. Ground-state bands of doubly even 166Hf nucleus. Int. J. Phys. Res. Appl. 3, 115-117, 2020.
Google Scholar
17
-
C. M. Baglin, Nucl. Data Sheets for A= 168, Nucl. Dat. Sheets, 111(7), 1807-2080, 2010.
Google Scholar
18
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