Computer modelling of distributions processes on vacancy nanoclusters depth in the heavy targets irradiated with ions

  • F. F. Komarov Belarusian State University, Minsk, Belarus
  • A. I. Kupchishin Kazakh National Pedagogical University named after Abai, Almaty, Kazakhstan
  • A. A. Kuatbayeva Sh.Ualikhanov Kokshetau State university, Kokshetay, Kazakhstan
  • T. A. Shmygaleva al-Farabi Kazakh National University, Almaty, Kazakhstan
  • K. A. Kabi al-Farabi Kazakh National University, Almaty, Kazakhstan
  • D. A. Katabas al-Farabi Kazakh National University, Almaty, Kazakhstan

Abstract

 Creation new materials with unique properties is one of priority researches areas, both in physics, and in technique. The study of small metal particles properties from atoms hundreds and thousands is of great interest by their possible usage as materials or surface nanostructures. The fact that nanomaterial properties considerably depend on the particles properties making them is undoubted. The free clusters internal structure research could play a key role in an explanation of their physical or chemical features. Work is assigned to obtaining the regularities arising when modeling radiation processes in the heavy ions irradiated with various ions. The regularities arising when calculating cascade and probabilistic functions depending on particles penetration depth, interactions number are found. Real areas finding the radiation defects concentration result are defined, calculations for various flying particles and heavy targets in the energy range 100 - 1000 keV are made. Calculations results are presented in the schedules and tables form.

 
 


 

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АнглийскийИспанскийИтальянскийКазахскийКитайский ТрадКитайский УпрКорейскийРусскийТурецкийФранцузский
 
АнглийскийИспанскийИтальянскийКазахскийКитайский ТрадКитайский УпрКорейскийРусскийТурецкийФранцузский
 
 
 
 
 


 
 
 
Звуковая функция ограничена 200 символами

 

 
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Published
Dec 25, 2017
How to Cite
KOMAROV, F. F. et al. Computer modelling of distributions processes on vacancy nanoclusters depth in the heavy targets irradiated with ions. International Journal of Mathematics and Physics, [S.l.], v. 8, n. 2, p. 33-37, dec. 2017. ISSN 2409-5508. Available at: <http://ijmph.kaznu.kz/index.php/kaznu/article/view/229>. Date accessed: 24 oct. 2018. doi: https://doi.org/10.1234/ijmph.v8i2.229.