Velocity effect in swift heavy ion irradiation: how the low- and high-energy track formation thresholds meet

被引:0
作者
R. A. Rymzhanov
N. Medvedev
A. E. Volkov
机构
[1] Joint Institute for Nuclear Research,
[2] The Institute of Nuclear Physics,undefined
[3] Institute of Physics,undefined
[4] Czech Academy of Sciences,undefined
[5] Institute of Plasma Physics,undefined
[6] Czech Academy of Sciences,undefined
[7] P.N. Lebedev Physical Institute of the Russian Academy of Sciences,undefined
来源
Journal of Materials Science | 2023年 / 58卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Variations of the threshold of swift heavy ion track formation with the ion energy and mass are studied here. We apply the hybrid multiscale approach combining TREKIS-3 code describing the electronic kinetics with the classical molecular dynamics tracing the evolution of the excited lattice. The results demonstrate that with a lowering of the energy loss curve (by choosing lighter ions for irradiation), the high-velocity threshold starts to shift down, whereas the low-velocity one remains constant until the thresholds meet. For certain ion parameters, a situation is possible in which both thresholds (low- and high-velocity) lie at the low-energy shoulder of the Bragg curve which results from the mismatch between the ion energy positions of the maximal track radius and the Bragg peak.
引用
收藏
页码:14072 / 14079
页数:7
相关论文
共 73 条
  • [1] Komarov FF(2017)Nano-and microstructuring of solids by swift heavy ions Phys Uspekhi 60 435-471
  • [2] Medvedev N(2023)Frontiers, challenges, and solutions in modeling of swift heavy ion effects in materials J Appl Phys 133 1-10
  • [3] Volkov AE(2021)TEM analysis of radiation effects in ODS steels induced by swift heavy ions Nucl Instrum Methods Phys Res Sect B Beam Interact with Mater Atoms 486 498-503
  • [4] Rymzhanov R(2009)The controlled fabrication of nanopores by focused electron-beam-induced etching Nanotechnology 20 343-227
  • [5] Rogozhkin SV(2020)Swift heavy ion irradiation of GaSb: from ion tracks to nano-porous networks Phys Rev Mater 4 223-4509
  • [6] Bogachev AA(2021)Direct detection of human adenovirus or SARS-CoV-2 with ability to inform infectivity using DNA aptamer-nanopore sensors Sci Adv 7 4502-22
  • [7] Nikitin AA(2013)Effect of swift heavy ion irradiation on lead sulfide quantum dots embedded in polyvinyl alcohol Radiat Eff Defects Solids 168 17-925
  • [8] Yemini M(2012)Nano-hillock formation in diamond-like carbon induced by swift heavy projectiles in the electronic stopping regime: experiments and atomistic simulations Appl Phys Lett 101 920-35
  • [9] Hadad B(2012)Swift heavy ion-induced silicon dioxide nanostructuration: experimental observation of velocity effect Eur Phys J Appl Phys 60 25-52
  • [10] Liebes Y(2005)Influence of ion velocity on the track morphology in dark mica GSI Sci Rep 3 41-481