Physics Journal
Articles Information
Physics Journal, Vol.1, No.1, Jul. 2015, Pub. Date: Jul. 16, 2015
Liquid Drop Model Prediction for Fusion Interaction Cross Section, Binding Energies and Fission Barriers on the Nucleus–Nucleus Interactions
Pages: 17-23 Views: 7923 Downloads: 3375
Authors
[01] A. Abel-Hafiez, Experimental Nuclear Physics Dept., Nuclear Research Centre, AEA, Cairo, Egypt.
Abstract
The liquid drop model(LDM) is used to calculate and describe the binding energies (BE) as a function of the mass number (A) for the most stable nuclei, liquid-drop fission barriers for some heavy nuclei, b-coefficients for the isobaric mass multiplet equation (IMME), Probability profile of 208pb, fusion cross section of some nuclear reactions and calculations for root mean square (rms) charge radii as a function of the atomic number. Some of our calculated characteristics are compared with experimental data, it`s found that there is a good agreement between our calculations and that data. Also, our LDM calculations gave a good agreement with the quantum molecular dynamic (QMD) calculations.
Keywords
Modeling, Liquid Drop Model, Nucleus-Nucleus Interactions
References
[01] C.F. von Weizsa cker, Z. Phys. 96, (1935) 431.
[02] H.A. Bethe and R.F. Bacher, Rev. Mod. Phys. 8, (1936) 82.
[03] L. Meitner and O.R. Frisch, Nature London, 143, (1939) 239.
[04] N. Bohr and J.A. Wheeler, Phys. Rev. 56, (1939) 426.
[05] K. Pomorski and J. Dudek, Phys. Rev. C67 (2003) 044316.
[06] Royer G., Generalized Liquid Drop Model and Fission, Fusion, Alpha and Cluster Radioactivity and Super heavy Nuclei, Current Problems in Nuclear Physics and Atomic Energy, Kiev, Ukraine (2012)
[07] Hofmann, S., Munzenberg, G., Rev. Mod. Phys. 72 (2000) 733.
[08] Moretto, L.G., Physics and Chemistry of Fission, IAEA, Vienna, Vol. 1 (1974) 329.
[09] Freiesleben, H., Britt, H.C., Huzenga, J.R., Physics and Chemistry of Fission, IAEA, Vienna, Vol. 1 (1974) 421.
[10] Ignatyuk, A.V., Itkis, M.G., Okolovich, V.N., Smirenkin, G.N., Tishin, A.S., Sov. J. Nucl. Phys. 21 (1976) 612.
[11] Ignatyuk, A.V., Istekov, K.K., Smirenkin, G.N., Sov. J. Nucl. Phys. 30 (1979) 1205.
[12] Dahlinger, M., Vermeulen, D., Schmidt, K.H., Nucl. Phys. A376 (1982) 94.
[13] Ignatyuk, A.V., et al., Sov. Part. Nucl. 16 (1985) 709.
[14] Smirenkin, G.N., INDC(CCP)-359, IAEA, Vienna (1993).
[15] Oganessian, Yu. Tc., Lazarev, Yu. A., Treatise on Heavy-Ion Science, Bromley, D. (Ed.), Vol. 4 (1987) 3.
[16] Sierk, A.J., Phys. Rev. C33 (1986) 2039.
[17] Myers, W.D., Swiatecki, W.J., Phys. Rev. C60 (1999) 014606.
[18] Vigdor, S.E., Karwowski, H.J., Jacobs, W.W., Kailas, S., Singh, P.P., Soga, F. Throwe, T.G., Phys. Rev. C26 (1982) 1035.
[19] Ignatyuk, A.V., Istekov, K.K., Smirenkin, G.N., Sov. J. Nucl. Phys. 36 (1982) 54.
[20] Royer G., Remaud B. Static and dynamic fusion barriers in heavy-ion reactions, Nucl. Phys. (1985)Vol. A444, P. 477.
[21] Kh Abdel-Waged, A Abdel-Hafiez and V V Uzhinskii, J. Phys. G: Nucl. Part. Phys. 26, No. 8 (2000) 1105.
[22] Lecture Notes in Nuclear Structure Physics, B. Alex Brown, 2011.
[23] Frégeau M. O. et al. X-Ray fluorescence from the element with atomic number Z = 120, Phys. Rev. Lett. (2012) Vol. 108, P. 122701
600 ATLANTIC AVE, BOSTON,
MA 02210, USA
+001-6179630233
AIS is an academia-oriented and non-commercial institute aiming at providing users with a way to quickly and easily get the academic and scientific information.
Copyright © 2014 - American Institute of Science except certain content provided by third parties.