Reliability of cross sections of the photoneutron reactions on 51V and 59Co in the bremsstrahlung beam experiments

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Using the experimental-theoretical method for evaluation of partial photoneutron reaction cross sections basing on objective physical criteria the reliability of data on the (γ, 1n) and (γ, 2n) reaction cross sections of 51V and 59Co nuclei obtained on bremsstrahlung γ-rays was investigated. It is found that partial reaction cross sections obtained by adding corrections to neutron yield cross sections σ(γ, xn) = σ(γ, 1n) + 2σ(γ, 2n) calculated within statistical theory do not satisfy the reliability criteria. Cross sections of the (γ, 1n) reaction are significantly underestimated in the considered experiments, while those of the (γ, 2n) reaction are overestimated, due obviously to the way information is obtained on the partial reaction cross sections by applying statistical theory corrections to the yield cross section of the σ(γ, xn). When describing the (γ, 1n) reaction cross section at photon energies below threshold B2n of the (γ, 2n) reaction, such corrections produce substantial systematic uncertainties in the ranges of energy where both partial reactions compete.

作者简介

V. Varlamov

Lomonosov Moscow State University

编辑信件的主要联系方式.
Email: VVVarlamov@gmail.com

Skobeltsyn Institute of Nuclear Physics

俄罗斯联邦, Moscow, 119991

A. Davydov

Lomonosov Moscow State University

Email: VVVarlamov@gmail.com

Skobeltsyn Institute of Nuclear Physics, Physics Faculty

俄罗斯联邦, Moscow

I. Mostakov

Lomonosov Moscow State University

Email: VVVarlamov@gmail.com

Physics Faculty

俄罗斯联邦, Moscow, 119991

参考

  1. Varlamov V.V., Davydov A.I., Ishkhanov B.S. // Eur. Phys. J. A. 2017. V. 53. P. 180.
  2. Варламов В.В., Давыдов А.И., Орлин В.Н. // Ядерн. физика. 2021. Т. 84. № 4. С. 278; Varlamov V.V., Davydov A.I., Orlin V.N. // Phys. Atom. Nucl. 2021. Т. 84. No. 4. P. 389.
  3. Fultz S.C., Bramblett R.L, Caldwell. J.T. et al. // Phys. Rev. 1962. V. 128. P. 2345.
  4. Alvarez R.A., Berman B.L., Faul D.D. et al. // Phys. Rev. С. 1979. V. 20. P. 128.
  5. Veyssiere A., Beil H., Bergere R. et al. // Nucl. Phys. A. 1974. V. 227. P. 513.
  6. Варламов В.В., Давыдов А.И., Орлин В.Н. // Вестн. Моск. ун–та. Сер. 3. Физ. Астрон. 2023. Т. 78. № 3. С. 2330206; Varlamov V.V., Davydov А.I., Orlin V.N. // Mosc. Univ. Phys. Bull. 2023. V. 78. No. 3. P. 303.
  7. Blatt J.M., Weisskopf V.F. Theoretical nuclear physics. NY.: John Wiley & Sons, Inc., 1952.
  8. Варламов В.В., Давыдов А.И., Мостаков И.А., Орлин В.Н. // Ядерн. физика. 2023. Т. 86. № 5. С. 532; Varlamov V.V., Davydov A.I., Mostakov I.A., Orlin V.N. // Phys. Atom. Nucl. 2023. V. 86. No. 5. P. 600.
  9. Горячев Б.И., Ишханов Б.С., Капитонов И.М. и др. // Изв. РАН. Сер. физ. 1969. Т. 33. С. 1736; Goryachev B.I., Ishkhanov B.S., Kapitonov I.M. et al. // Bull. Russ. Acad. Sci. Phys. 1969. V. 33. P. 1588.
  10. Baciu G., Catana D., Deberth C. et al. // Nucl. Phys. 1971. V. 167. P. 177.
  11. Baciu G., Bonazzola G.C., Minetti B. et al. // Nucl. Phys. 1965. V. 67. P. 178.
  12. Fultz S.C., Bramblett R.L., Caldwell J.T. et al. // Phys. Rev. 1962. V. 128. P. 2345.
  13. Ишханов Б.С., Орлин В.Н. // Ядерн. физика. 2008. Т. 71. С. 517; Ishkhanov B.S., Orlin V.N. // Phys. Atom. Nucl. 2008. V. 71. P. 493.
  14. Варламов В.В., Ишханов Б.С., Орлин В.Н., Четверткова В.А. // Изв. РАН. Сер. физ. 2010. Т. 74. С. 875; Varlamov V.V., Ishkhanov B.S., Orlin V.N., Chetvertkova V.A. // Bull. Russ. Acad. Sci. Phys. 2010. V. 74. P. 833.
  15. Варламов В.В., Ишханов Б.С., Орлин В.Н., Трощиев С.Ю. // Изв. РАН. Сер. физ. 2010. Т. 74. С. 884; Varlamov V.V., Ishkhanov B.S., Orlin V.N., Troshchiev S.Yu. // Bull. Russ. Acad. Sci. Phys. 2010. V. 74. P. 842.
  16. Kawano T., Cho Y.S., Dimitriou P. et al. // Nucl. Data Sheets. 2020. V. 163. P. 109.
  17. Bergere R.L., Beil H., Veyssiere A. // Nucl. Phys. A. 1968. V. 121. P. 463.

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