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The Study of Neutron Induced Reaction on Manganese Reaction Cross-Section at Intermediate Energy

Received: 3 December 2020    Accepted: 15 December 2020    Published: 12 January 2021
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Abstract

The general neutron induced reaction cross sections with the projectile neutron energy are being studied. As a result of this, the compound nucleus is formed through de-excitation of the selected nuclei by emitted particles γ and 2n with the reaction cross section at intermediate energy. The production of residual nuclide by neutron induced reaction on the selected nuclei has been investigated by using computer code projection angular-momentum coupled evaporation Monte Carlo code (PACE4). Dependence of Reaction Cross Section for Projectile Neutron with Different K Values on Target 55Mn in the Energy Range (0.5 - 3.42) Mev and Dependence of Reaction Cross Section for Projectile Neutron with Different K Values on 55Mn Target in the Energy Range (11.5 - 38.5) Mev. Then, the theoretical estimated value compared with the Experimental value the data which obtained from International Atomic and Energy Agency, Exchange format. Results show us the reaction cross section vs energy of projectile neutron with target nucleus Manganese and the emitted particles were γ and 2n respectively with new residual nuclei, i.e. 56Mn and 54Mn, in addition to this the best fit K values are 10 and 8 for each channels respectively. Finally the level density parameter is the dominant parameter that can influence the reaction cross section from the outcome of this software by varying with free constant parameter (K). i.e., 8, 10 and 12.

Published in Radiation Science and Technology (Volume 7, Issue 1)
DOI 10.11648/j.rst.20210701.11
Page(s) 1-6
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Manganese, Level Density Parameter, Free Constant Parameter, Reaction Cross-section

References
[1] Ejigu Kebede, The study ofα- particle induced reaction on 27-Al and 197-Au Nuclides Addis Ababa university, (2014).
[2] Abdu Ali, Neutron Physics, Addis Ababa, Ethiopia June, 2011
[3] Awoke Tadesse, The study of α_ Particle induced reaction on gallium isotopes Addis ababa university, (2007).
[4] Ntumba Lobo, Study of 20Ne induced reaction in 59Co, Incomplete and complete fusion. Addis Ababa university, (2016).
[5] Keller. C, Radiochemistry, Haleted Press, JOHN WILEY&SON, (1988).
[6] Getanehayele, Study of proton induced reaction - cross section for various energies on yttrium and scandium, Addis Ababa university, (2007).
[7] http://nuclearpowertraining.tpub.com/h1019v1/css/Figure-1-Typical-Neutron Absorption-Cross-Section-Vs-Neutron-Energy-113.htm.
[8] https://en.wikipedia.org/wiki/Neutron_cross_section.
[9] Biniyam Nigussie, Complete and incomplete fusion studies in some 14N + 59Co systems, Addis Ababa university, (2012).
[10] https://www.iaea.org/exfor/servlet/x4sgereacTablrepx. (auther) Y. Uwamino, H. supita, Y. kondo, T. Nakamurad.
[11] https://www-nds.iaea.org/exfor/servlet/. (auther) R. p. Guutam. Es. Al, (1992).
[12] https://www.oecd-nea.org/janisweb/book/neutrons/Mn55/MT102/renderer/264.
[13] https://www.oecd-nea.org/janisweb/book/neutrons/Mn55/MT16/renderer/277.
[14] P. M. Prajapati et al., Measurement of neutron-induced reaction cross-sections in zirconium isotopes at thermal, 2.45 MeV and 9.85 MeV energies, Nucl. Sci. Eng. 171, 78 (2012).
[15] “Horia Hulubei” National Institute for Physics and Nuclear Engineering, PO Box MG-6, 077125 Bucharest, Romania b V. G. Khlopin Radium Institute, 2nd Murinski Ave. 28, St. Petersburg 194021, Russia Fast-neutron induced pre-equilibrium reactions on 55Mn and 63, 65Cu at energies up to 40 MeV, 21 March 2008.
[16] Ling Liu, Caiwan Shen, Qingfeng Li, Ya Tu, Xiaobao Wang, and Yongjia WangResidue cross sections of 50Ti-induced fusion reactions based on the two-step model.
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  • APA Style

    Asmamaw Tsega Alemu, Yenesew Asradew. (2021). The Study of Neutron Induced Reaction on Manganese Reaction Cross-Section at Intermediate Energy. Radiation Science and Technology, 7(1), 1-6. https://doi.org/10.11648/j.rst.20210701.11

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    ACS Style

    Asmamaw Tsega Alemu; Yenesew Asradew. The Study of Neutron Induced Reaction on Manganese Reaction Cross-Section at Intermediate Energy. Radiat. Sci. Technol. 2021, 7(1), 1-6. doi: 10.11648/j.rst.20210701.11

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    AMA Style

    Asmamaw Tsega Alemu, Yenesew Asradew. The Study of Neutron Induced Reaction on Manganese Reaction Cross-Section at Intermediate Energy. Radiat Sci Technol. 2021;7(1):1-6. doi: 10.11648/j.rst.20210701.11

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  • @article{10.11648/j.rst.20210701.11,
      author = {Asmamaw Tsega Alemu and Yenesew Asradew},
      title = {The Study of Neutron Induced Reaction on Manganese Reaction Cross-Section at Intermediate Energy},
      journal = {Radiation Science and Technology},
      volume = {7},
      number = {1},
      pages = {1-6},
      doi = {10.11648/j.rst.20210701.11},
      url = {https://doi.org/10.11648/j.rst.20210701.11},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.rst.20210701.11},
      abstract = {The general neutron induced reaction cross sections with the projectile neutron energy are being studied. As a result of this, the compound nucleus is formed through de-excitation of the selected nuclei by emitted particles γ and 2n with the reaction cross section at intermediate energy. The production of residual nuclide by neutron induced reaction on the selected nuclei has been investigated by using computer code projection angular-momentum coupled evaporation Monte Carlo code (PACE4). Dependence of Reaction Cross Section for Projectile Neutron with Different K Values on Target 55Mn in the Energy Range (0.5 - 3.42) Mev and Dependence of Reaction Cross Section for Projectile Neutron with Different K Values on 55Mn Target in the Energy Range (11.5 - 38.5) Mev. Then, the theoretical estimated value compared with the Experimental value the data which obtained from International Atomic and Energy Agency, Exchange format. Results show us the reaction cross section vs energy of projectile neutron with target nucleus Manganese and the emitted particles were γ and 2n respectively with new residual nuclei, i.e. 56Mn and 54Mn, in addition to this the best fit K values are 10 and 8 for each channels respectively. Finally the level density parameter is the dominant parameter that can influence the reaction cross section from the outcome of this software by varying with free constant parameter (K). i.e., 8, 10 and 12.},
     year = {2021}
    }
    

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  • TY  - JOUR
    T1  - The Study of Neutron Induced Reaction on Manganese Reaction Cross-Section at Intermediate Energy
    AU  - Asmamaw Tsega Alemu
    AU  - Yenesew Asradew
    Y1  - 2021/01/12
    PY  - 2021
    N1  - https://doi.org/10.11648/j.rst.20210701.11
    DO  - 10.11648/j.rst.20210701.11
    T2  - Radiation Science and Technology
    JF  - Radiation Science and Technology
    JO  - Radiation Science and Technology
    SP  - 1
    EP  - 6
    PB  - Science Publishing Group
    SN  - 2575-5943
    UR  - https://doi.org/10.11648/j.rst.20210701.11
    AB  - The general neutron induced reaction cross sections with the projectile neutron energy are being studied. As a result of this, the compound nucleus is formed through de-excitation of the selected nuclei by emitted particles γ and 2n with the reaction cross section at intermediate energy. The production of residual nuclide by neutron induced reaction on the selected nuclei has been investigated by using computer code projection angular-momentum coupled evaporation Monte Carlo code (PACE4). Dependence of Reaction Cross Section for Projectile Neutron with Different K Values on Target 55Mn in the Energy Range (0.5 - 3.42) Mev and Dependence of Reaction Cross Section for Projectile Neutron with Different K Values on 55Mn Target in the Energy Range (11.5 - 38.5) Mev. Then, the theoretical estimated value compared with the Experimental value the data which obtained from International Atomic and Energy Agency, Exchange format. Results show us the reaction cross section vs energy of projectile neutron with target nucleus Manganese and the emitted particles were γ and 2n respectively with new residual nuclei, i.e. 56Mn and 54Mn, in addition to this the best fit K values are 10 and 8 for each channels respectively. Finally the level density parameter is the dominant parameter that can influence the reaction cross section from the outcome of this software by varying with free constant parameter (K). i.e., 8, 10 and 12.
    VL  - 7
    IS  - 1
    ER  - 

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Author Information
  • Departments of Physics, College of Natural and Computational Science, Injibara University, Injibara, Ethiopia

  • Departments of Physics, College of Natural and Computational Science, Injibara University, Injibara, Ethiopia

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