Temperature dependent calculations of optical potential in elastic scattering cross section basis: an application to 10B + 120Sn reaction
Abstract
We examine the effect of temperature on the elastic scattering angular distributions of 10B +
120Sn reaction. For this, we use two-parameter fermi density distribution for both 10B and 120Sn
nuclei as a function of temperature (T = 0, 1, 2, 3, 4, 5, 6, 7 MeV). We obtain the real potentials
by using these density distributions within the double folding model based on the optical model.
The imaginary part of the optical potential is considered as Woods-Saxon potential. We calculate
the elastic scattering angular distributions for all the investigated cases. To see differences between
the theoretical results, we compare our results with the experimental data. Then, we discuss the
relationship between different root mean square (rms) radii of the nuclei. Finally, we give volume
integrals and cross sections according to various temperature values.
Keywords
References
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Details
Primary Language
English
Subjects
-
Journal Section
Research Article
Authors
Murat Aygun
*
Türkiye
Publication Date
June 27, 2019
Submission Date
March 25, 2019
Acceptance Date
May 15, 2019
Published in Issue
Year 2019 Volume: 5 Number: 1