A coupled‐channels optical model with a coupling scheme based on nuclear wave functions of the soft‐rotator model was applied to analyze experimental nucleon‐nucleus interaction data for even‐even nuclides with mass number A=24–122. We found that all the available data (total cross sections, angular distributions of elastically and inelastically scattered nucleons, and reaction cross sections) for these nuclides can be described to a good accuracy using an optical potential having smooth dependencies of potential values, radii, and diffuseness on the mass number. The individual properties of the target nuclides are accounted for by individuality of the nuclear Hamiltonian parameters, adjusted to reproduce the low‐lying collective level structure, Fermi energies, and deformation parameters.
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24 May 2005
INTERNATIONAL CONFERENCE ON NUCLEAR DATA FOR SCIENCE AND TECHNOLOGY
26 September-1 October 2004
Santa Fe, New Mexico (USA)
Research Article|
May 24 2005
Soft‐Rotator Coupled Channels Global Optical Potential for A=24–122 Mass Region Nuclides up to 200‐MeV Incident Nucleon Energies Available to Purchase
Efrem Sh. Soukhovitski;
Efrem Sh. Soukhovitski
*Joint Institute of Energy and Nuclear Research‐Sosny, Academician A. K. Krasin Str. 99, Minsk 220109, Belarus
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Satoshi Chiba;
Satoshi Chiba
†Japan Atomic Energy Research Institute, Tokai, Naka, Ibaraki 319‐1195, Japan
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Jeong‐Yeon Lee
Jeong‐Yeon Lee
**Department of Physics, Sejong University, Seoul 143‐747, Korea
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Efrem Sh. Soukhovitski
st
Satoshi Chiba
gger
Jeong‐Yeon Lee
stast
*Joint Institute of Energy and Nuclear Research‐Sosny, Academician A. K. Krasin Str. 99, Minsk 220109, Belarus
†Japan Atomic Energy Research Institute, Tokai, Naka, Ibaraki 319‐1195, Japan
**Department of Physics, Sejong University, Seoul 143‐747, Korea
AIP Conf. Proc. 769, 1100–1103 (2005)
Citation
Efrem Sh. Soukhovitski, Satoshi Chiba, Jeong‐Yeon Lee; Soft‐Rotator Coupled Channels Global Optical Potential for A=24–122 Mass Region Nuclides up to 200‐MeV Incident Nucleon Energies. AIP Conf. Proc. 24 May 2005; 769 (1): 1100–1103. https://doi.org/10.1063/1.1945199
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