Abstract <p>The paper presents experimental and calculated data on the implantation of hydrogen ions with an energy of 5 keV into single-crystal samples of synthetic quartz and olivine. It has been experimentally shown that when irradiated with hydrogen molecules with an energy of 5 keV and a dose of <InlineEquation ID="IEq1"> <EquationSource Format="TEX">\(5\times 10^{15}\)</EquationSource> <!--BPhysMGU2570126Klyueva-m1--> </InlineEquation> ion/cm<InlineEquation ID="IEq2"> <EquationSource Format="TEX">\({}^{2}\)</EquationSource> <!--BPhysMGU2570126Klyueva-m2--> </InlineEquation>, the implantation depth of hydrogen ions is 810 and 620 <InlineEquation ID="IEq3"> <EquationSource Format="TEX">\(\text{\AA}\)</EquationSource> <!--BPhysMGU2570126Klyueva-m3--> </InlineEquation> for quartz and olivine, respectively. Taking into account hydrogen beam spraying, these results are in good agreement with calculation performed using SRIM software package reported here and data reported previously.</p>

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Study of Volatile Compounds Originating from the Minerals of the Regolith due to Solar Wind

  • M. V. Klyueva,
  • D. M. Podlepina,
  • E. M. Sorokin,
  • E. G. Roskina,
  • S. A. Fimina,
  • K. M. Ryazantsev,
  • D. K. Minnenbaev,
  • O. M. Marchenko,
  • E. V. Zharikov,
  • V. V. Saraykin,
  • E. N. Slyuta

摘要

Abstract

The paper presents experimental and calculated data on the implantation of hydrogen ions with an energy of 5 keV into single-crystal samples of synthetic quartz and olivine. It has been experimentally shown that when irradiated with hydrogen molecules with an energy of 5 keV and a dose of \(5\times 10^{15}\) ion/cm \({}^{2}\) , the implantation depth of hydrogen ions is 810 and 620 \(\text{\AA}\) for quartz and olivine, respectively. Taking into account hydrogen beam spraying, these results are in good agreement with calculation performed using SRIM software package reported here and data reported previously.