Studies of angular distributions and cross sections of gamma-ray radiation on Si and O nuclei in reactions with fast neutrons

Cover Page

Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

Within the framework of the TANGRA project, the experimental installation was created to measure the angular distributions and cross sections of gamma-ray radiation in reactions (n, Xγ) during the interaction of neutrons with an energy of 14.1 MeV with Si and O nuclei. We described the design features of the installation and the method of processing the experimental data obtained.

About the authors

A. V. Andreev

Joint Institute for Nuclear Research; Lomonosov Moscow State University

Email: andreev.av20@physics.msu.ru
Dubna, Russia; Moscow, Russia

N. A. Fedorov

Joint Institute for Nuclear Research

Dubna, Russia

D. N. Grozdanov

Joint Institute for Nuclear Research; Institute for Nuclear Research and Nuclear Energy

Dubna, Russia; Sofia, Bulgaria

P. S. Prusachenko

Joint Institute for Nuclear Research

Dubna, Russia

Yu. N. Kopatch

Joint Institute for Nuclear Research

Dubna, Russia

T. Yu. Tretyakova

Joint Institute for Nuclear Research; Lomonosov Moscow State University; Lomonosov Moscow State University, Skobeltsyn Institute of Nuclear Physics

Dubna, Russia; Moscow, Russia; Moscow, Russia

G. V. Pampushik

Joint Institute for Nuclear Research; Lomonosov Moscow State University

Dubna, Russia; Moscow, Russia

C. Hramco

Joint Institute for Nuclear Research

Dubna, Russia

A. P. Zuev

Lomonosov Moscow State University

Moscow, Russia

P. G. Filonchik

Joint Institute for Nuclear Research; Moscow Institute of Physics and Technology (National Research University)

Dubna, Russia; Moscow, Russia

P. I. Kharlamov

Joint Institute for Nuclear Research; Lomonosov Moscow State University, Skobeltsyn Institute of Nuclear Physics

Dubna, Russia; Moscow, Russia

I. N. Ruskov

Joint Institute for Nuclear Research; Institute for Nuclear Research and Nuclear Energy

Dubna, Russia; Sofia, Bulgaria

V. R. Skoy

Joint Institute for Nuclear Research

Dubna, Russia

References

  1. Fedorov N.A., Grozdanov D.N., Kopatch Yu.N. et al. // Bull. Russ. Acad. Sci. Phys. 2020. V. 84. No. 4. P. 367.
  2. Дабылова С.Б., Копач Ю.Н., Федоров Н.А. и др. // Изв. РАН. Сер. физ. 2021. Т. 85. № 10. С. 1410; @Dabylova S.B., Kopach Y.N., Fedorov N.A. et al. // Bull. Russ. Acad. Sci. Phys. 2021. V. 85. No. 10. P. 1090.
  3. Dashkov I.D., Fedorov N.A., Grozdanov D.N. et al. // Bull. Russ. Acad. Sci. Phys. 2022. V. 86. No. 8. P. 893.
  4. Рогов Ю.Н., Сапожников М.Г., Никитин Г.М., Ямов А.В. // Горный журнал. 2018. № 5. С. 58.
  5. @@Yakubova G., Kavetskiy A., Prior S.A., Torbert H.A. // Vadose Zone J. 2015. V. 15. P. 1.
  6. Aleksakhin V.Yu., Razenkov E.A., Rogov Yu.N. et al. // Phys. Part. Nucl. Lett. 2022. V. 19. No. 6. P. 699.
  7. Плотникова Т.А., Пономарева T.A. Гумус и почвообразование: Методы и результаты изучения. Л.: Наука, 1980. 221 с.
  8. Андреев А.В., Федоров Н.А. // Учен. зап. физ. факта Моск. ун-та. 2023. № 5. С. 2330210.
  9. https://flnp.jinr.int/en-us/main/facilities/ tangra-project-en.
  10. https://www.ortec-online.com/-/ media/ametekortec/brochures/g/ gamma-x-a4.pdf?la=enrevision= 420cd7bb-9d75-485c-80a2-acaaccdf8197.
  11. Grozdanov D.A., Fedorov N.A., Dabylova S.B. et. al. // Chin. Phys. C. 2024. V. 48. Art. No. 034003.
  12. Fedorov N.A., Grozdanov D.N., Bystritskiy V.M. et. al. // EPJ Web Conf. 2018. V. 177. Art. No. 02002.
  13. Kopatch Yu.N., Grozdanov D.N., Fedorov N.A. et. al. // Moscow Univ. Phys. Bull. 2024. V. 79. No. 3. P. 308.
  14. Valcovic V. 14 MeV Neutrons: Physics and Applications. Boca Raton: CRC Press, 2015.
  15. Allison J., Amako K., Apostolakis J. et al. // Nucl. Instrum. Meth. A. 2016. V. 835. P. 186.
  16. Grozdanov D.N., Fedorov N.A., Kopatch Yu.N. et al. // Nucl. Inst. Meth. A. 2021. V. 1014. Art. No. 165741.
  17. https://www.nndc.bnl.gov/nudat3.
  18. Simakov S.P., Pavlik A., Vonach H. Status of Experimental and Evaluated Discrete Gamma-Ray Production at En=14.5 MeV. INDC(CCP)-413. Vienna: IAEA, 1998.
  19. Koning A., Hilaire S., and Goriely S. // Eur. Phys. J. A. 2023. V. 59. P. 131.
  20. Abbondanno U., Giacomich R., Lagonegro M., Pauli G. // J. Nucl. Energy. 1973. V. 27. No. 4. P. 227.
  21. Connell K., Cox A. // Appl. Radiat. Isotop. 1975. V. 26. No. 2. P. 71.
  22. Zhou H.-Y., Deng F.-G., Cheng W. et al. // Nucl. Instrum. Meth. A. 2011. V. 648. P. 192.
  23. Nelson R.O., Chadwick M.B., Michaudon A., Young P.G. // Nucl. Sci. Eng. 2001. V. 138. No. 2. P. 105.
  24. Morgan I.L., Ashe J.B., Nellis D.O. // Div. Tech. Info. U.S. AEC Reports. 1964. Art. No. 22012.
  25. McDonald W., Robson J., Malcolm R. // Nucl. Phys. 1966. V. 75. No. 2. P. 353.
  26. Kozlowski T., Kusch W., Wojtkowska J. // Inst. Badan Jadr. (Nucl. Res.). Swierk+Warsaw, Repts. 1965. V. 661.

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2025 Russian Academy of Sciences

Согласие на обработку персональных данных

 

Используя сайт https://journals.rcsi.science, я (далее – «Пользователь» или «Субъект персональных данных») даю согласие на обработку персональных данных на этом сайте (текст Согласия) и на обработку персональных данных с помощью сервиса «Яндекс.Метрика» (текст Согласия).