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《中国物理C》(英文)编辑部
2024年10月30日

Double folding analysis of 3He elastic and inelastic scattering to low lying states on 90Zr, 116Sn and 208Pb at 270 MeV

  • The experimental data on elastic and inelastic scattering of 270 MeV 3He particles to several low lying states in 90Zr, 116Sn and 208Pb are analyzed within the double folding model (DFM). Fermi density distribution (FDD) of target nuclei is used to obtain real potentials with different powers. DF results are introduced into a modified DWUCK4 code to calculate the elastic and inelastic scattering cross sections. Two choices of potentials form factors are used; Woods Saxon (WS) and Woods Saxon Squared (WS2) for real potential, while the imaginary part is taken as phenomenological Woods Saxon (PWS) and phenomenological Woods Saxon Squared (PWS2). This comparison provides information about the similarities and differences of the models used in calculations.
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  • [1] Satchler G R. Direct Nuclear Reactions. Oxford: Clarendon Press, 1983. 392[2] Singh P P, LI Q, Schwandt P, Jacobs W W, Saber M, Stephenson E J, Saxen A, Kailas S. Pramana J. Phys., 1986, 27(6): 747[3] Yamagata T, Utsunomiya H, Tanaka M, Nakayama S, Koori N, Tamii A, Fujita Y, Katori K, MInoue, Fujiwara M, Ogata H. Nucl. Phys. A, 1995, 589: 425[4] Sakuragi Y, Katsuma M. Nucl. Instrum. Methods Phys. Res. A, 1998, 402: 347[5] Satchler G R. Introduction to Nuclear Reactions. London: Mc Millan Press Ltd., 1980. 153[6] Krane K S. Introductory Nuclear Physics, New York: John Wiley and Sons, 1988. 396[7] Brandan M E, Satchler G R. Phys. Rep., 1997, 285: 143[8] El-Hammamy M N, Attia A, El-Akkad F A, Abdel-Moneim A M. Chin. Phys. C, 2014, 38(3): 034102[9] Cook J. Comput. Phys. Comm., 1982, 25: 125[10] Satchler G R, Love W G. Phys. Rep., 1979, 55: 183[11] El-Azab Farid M, Mahmoud Z M M, Hassan G S. Nucl. Phys. A, 2001, 691: 671[12] Azab Farid M El, Mahmoud Z M M, Hassan G S. Phys. Rev. C, 2001, 64: 014310[13] Chwieroth F S, TANG Y C, Thompson D R. Phys. Rev. C, 1974, 9: 56[14] El-Azab Farid M, Hassanain M A. Nucl. Phys. A, 2000, 678: 39[15] DeJager C W, DeVries H, DeVries C. Atomic Data and Nuclear Data Tables, 1974, 14: 479[16] Kunz P D. University of Colorado (unpublished)[17] Kürküo#287;lu M E, Aytekin H, Boztosun I. Modern Physics Letters A, 2010, 21(29): 2217[18] Budzanowski A, Alderliesten C, Bojowald J, Oelert W, Turek P, Dabrowski H, Wiktor S. Proceedings of the Karlsruhe International Discussion Meeting 1979. 219[19] Khoa D T, Satchler G R. Nucl. Phys. A, 2000, 668: 3-41
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Marwa N. El-Hammamy. Double folding analysis of 3He elastic and inelastic scattering to low lying states on 90Zr, 116Sn and 208Pb at 270 MeV[J]. Chinese Physics C, 2015, 39(3): 034101. doi: 10.1088/1674-1137/39/3/034101
Marwa N. El-Hammamy. Double folding analysis of 3He elastic and inelastic scattering to low lying states on 90Zr, 116Sn and 208Pb at 270 MeV[J]. Chinese Physics C, 2015, 39(3): 034101.  doi: 10.1088/1674-1137/39/3/034101 shu
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Received: 2014-06-05
Revised: 1900-01-01
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Double folding analysis of 3He elastic and inelastic scattering to low lying states on 90Zr, 116Sn and 208Pb at 270 MeV

    Corresponding author: Marwa N. El-Hammamy,
  • Physics Department, Faculty of Science, Damanhur University, Egypt

Abstract: The experimental data on elastic and inelastic scattering of 270 MeV 3He particles to several low lying states in 90Zr, 116Sn and 208Pb are analyzed within the double folding model (DFM). Fermi density distribution (FDD) of target nuclei is used to obtain real potentials with different powers. DF results are introduced into a modified DWUCK4 code to calculate the elastic and inelastic scattering cross sections. Two choices of potentials form factors are used; Woods Saxon (WS) and Woods Saxon Squared (WS2) for real potential, while the imaginary part is taken as phenomenological Woods Saxon (PWS) and phenomenological Woods Saxon Squared (PWS2). This comparison provides information about the similarities and differences of the models used in calculations.

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