Features of changes in the surface structure of K-208 glass under electron—proton irradiation

被引:5
|
作者
Khasanshin R.H. [1 ]
Novikov L.S. [2 ]
Korovin S.B. [3 ]
机构
[1] OAO “Kompozit”, Korolev, 141070, Moscow oblast
[2] Skobeltsyn Institute of Nuclear Physics, Moscow State University, Moscow
[3] Prokhorov Institute of General Physics, Russian Academy of Sciences, Moscow
来源
Khasanshin, R.H. (rhkhas@mail.ru) | 1600年 / Izdatel'stvo Nauka卷 / 11期
关键词
atomicforce microscopy; electrostatic discharges; magnetospheric plasma; microprotrusions; radiation-induced annealing of defects;
D O I
10.1134/S102745101705007X
中图分类号
学科分类号
摘要
Changes in the surface structure of K-208 glass after single-time irradiation of its samples with 20-keV electrons and protons are studied using atomic-force microscopy. Irradiation is performed in a vacuum chamber under a pressure of 10–4 Pa; the densities of the electron (ϕe) and proton (ϕр) fluxes are varied in the range of 1010–2.5 × 1011 cm−2 s−1. Analysis of the samples irradiated in the case where the parameters ϕe and ϕр increased in a stepwise manner makes it possible to study the appearance, growth, and evolution of microscopic structures on their surfaces. The radiation-stimulated processes of defect annealing and the release and field diffusion of alkali metal ions are accompanied by crystallization of the irradiated glass layer, which gives grounds for the use of dislocation mechanisms for mass transfer in explaining the formation of microprotrusions on its surface. It is shown that the character of changes in the structure is determined by the values of the parameters ϕe and ϕр and the ratio between them. In particular, it is established that, in the case of electron— proton irradiation of the glass, electrostatic discharges begin to noticeably affect the formation of microprotrusions for ϕе > 3ϕр. © 2017, Pleiades Publishing, Ltd.
引用
收藏
页码:917 / 923
页数:6
相关论文
共 50 条
  • [1] Structural Changes of the K-208 Glass Surface after Proton Irradiation of Different Intensity
    Khasanshin, R. H.
    Novikov, L. S.
    JOURNAL OF SURFACE INVESTIGATION, 2024, 18 (05): : 1173 - 1178
  • [2] On the Role of the Proton Component in the Evolution of the Morphology of K-208 Glass under Combined Electron–Proton Irradiation
    Khasanshin R.H.
    Novikov L.S.
    Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques, 2018, 12 (6) : 1088 - 1098
  • [3] Formation of Oxygen Bubbles in K-208 Glass under Electron Irradiation
    Khasanshin, R. H.
    Novikov, L. S.
    INORGANIC MATERIALS-APPLIED RESEARCH, 2021, 12 (02) : 313 - 319
  • [4] Formation of Oxygen Bubbles in K-208 Glass under Electron Irradiation
    R. H. Khasanshin
    L. S. Novikov
    Inorganic Materials: Applied Research, 2021, 12 : 313 - 319
  • [5] Study of Electrostatic Discharges upon the Electron Irradiation of K-208 Glass
    Khasanshin, R. H.
    Novikov, L. S.
    Korovin, S. B.
    JOURNAL OF SURFACE INVESTIGATION, 2015, 9 (01): : 81 - 86
  • [6] The effect of electron irradiation of K-208 glass on the contamination of its surface by high molecular weight compounds
    Khasanshin R.K.
    Novikov L.S.
    Inorg. Mater.: Appl. Res., 2 (121-127): : 121 - 127
  • [7] Changes in K-208 glass transmittance spectra under ionizing radiation and molecular fluxes
    Khasanshin R.K.
    Novikov L.S.
    Journal of Surface Investigation, 2014, 8 (04): : 698 - 702
  • [8] Influence of radiation-induced discharges on K-208 glass properties
    Khasanshin, R. H.
    Galygin, A. N.
    2018 18TH EUROPEAN CONFERENCE ON RADIATION AND ITS EFFECTS ON COMPONENTS AND SYSTEMS (RADECS), 2018, : 125 - 128
  • [9] Analysis of Results from Irradiating K-208 Glass Plates with Protons of 30 keV
    Khasanshin R.H.
    Primenko D.A.
    Bulletin of the Russian Academy of Sciences: Physics, 2022, 86 (05) : 526 - 531
  • [10] Electrodischarge processes in K-208 and CMG glass exposed to 10–40 keV electrons
    Khasanshin R.H.
    Novikov L.S.
    Gatsenko L.S.
    Volkova Y.B.
    Inorganic Materials: Applied Research, 2015, 6 (05) : 438 - 444