Stopping Power of Matter for a Beam of Monoenergetic Alpha Particles

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The results of using the statistics of multiple scattering to describe the dependence of the stopping power S of matter on the energy E0 of an alpha particle beam are presented. It is shown that the application of a new technique based on taking into account the dependence of the charge state of the beam ions on the ratio of the ion velocity to the minimum velocity of the substance electrons makes it possible to calculate S adequately to the experimental results in a wide range of particle energies E0.

Sobre autores

N. Mikheev

Shubnikov Institute of Crystallography of FSRC “Crystallography and Photonics” RAS

Autor responsável pela correspondência
Email: kmikran@spark-mail.ru
Russia, 19333, Moscow

I. Bezbakh

Shubnikov Institute of Crystallography of FSRC “Crystallography and Photonics” RAS

Email: kmikran@spark-mail.ru
Russia, 19333, Moscow

Bibliografia

  1. ICRU Report 49. Stopping Powers and Ranges for Protons and Alpha Particles. International Commission on Radiation Units and Measurements. 1993.
  2. Andersen H.H., Ziegler J.F. Hydrogen Stopping Powers and Ranges in All Elements. N.Y.: Pergamon Press, 1977.
  3. ICRU Report 37. Stopping Powers for Electrons and Positrons. International Commission on Radiation Units and Measurements. 1984.
  4. Ward E.W., Notte J., Economou N.P. // J. Vac. Sci. Technol. B. 2006. V. 24. P. 2871.
  5. Van Gastel R., Hlawacek G., Zandvliet H.J.W., Poelsema B. // Microelectron. Reliability. 2012. V. 52. № 9–10. P. 2104. https://doi.org/10.1016/j. microrel. 2012.06.130
  6. Михеев Н.Н. // Поверхность. Рентген., синхротр. и нейтрон. исслед. 2022. № 3. С. 94. https://doi.org/10.31857/S1028096022030141
  7. Cruz S.A. // Rad. Effects. 1986. V. 88. P. 159.
  8. Bohr N. // K. Dan Vidensk. Mat. Fys. Medd. 1948. V. 18. P. 8.
  9. Betz H.D., Hortig G, Leischner E., Schmelzer Ch., Stadler B., Weihrauch J. // Phys. Lett. A. 1966. V. 22. P. 643.
  10. Михеев Н.Н. // Поверхность. Рентген., синхротр. и нейтрон. исслед. 2022. № 6. С. 54. https://doi.org/10.31857/S102809602
  11. Михеев Н.Н. // Поверхность. Рентген., синхротр. и нейтрон. исслед. 2010. № 4. С. 25.
  12. Ландау Л.Д., Лившиц Е.М. Квантовая механика. Нерелятивистская теория. М.: Наука, 1974. 607 с.
  13. Михеев Н.Н., Колесник А.С. // Поверхность. Рентген., синхротр. и нейтрон. исслед. 2017. № 12. С. 88. https://doi.org/10.7868/S0207352817120083
  14. Михеев Н.Н. // Поверхность. Рентген., синхротр. и нейтрон. исслед. 2020. № 12. С. 70. https://doi.org/10.31857/ S1028096020120120201
  15. Михеев Н.Н. // Поверхность. Рентген., синхротр. и нейтрон. исслед. 2020. № 3. С. 77. https://doi.org/10.31857/S1028096020030127
  16. Михеев Н.Н. // Поверхность. Рентген., синхротр. и нейтрон. исслед. 2019. № 8. С. 56. https://doi.org/10.1134/S0207352819080109
  17. Paul H. IAEA. NDS. https://www-nds.iaca.org/stopping
  18. Ziegler J.F. Handbook Stopping Powers and Ranges in All Elemental Matters. N.Y.: Pergamon Press, 1978. 368 p.

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Declaração de direitos autorais © Н.Н. Михеев, И.Ж. Безбах, 2023