Development of Continuum-Atomistic Approach for Modeling Metal Irradiation by Heavy Ions

Over the last several decades active research in the field of materials irradiation by high-energy heavy ions has been worked out. The experiments in this area are labor-consuming and expensive. Therefore the improvement of the existing mathematical models and the development of new ones based on th...

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Main Authors: Batgerel Balt, Dimova Stefka, Puzynin Igor, Puzynina Taisia, Hristov Ivan, Hristova Radoslava, Tukhliev Zafar, Sharipov Zarif
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201817303005
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author Batgerel Balt
Dimova Stefka
Puzynin Igor
Puzynina Taisia
Hristov Ivan
Hristova Radoslava
Tukhliev Zafar
Sharipov Zarif
author_facet Batgerel Balt
Dimova Stefka
Puzynin Igor
Puzynina Taisia
Hristov Ivan
Hristova Radoslava
Tukhliev Zafar
Sharipov Zarif
author_sort Batgerel Balt
collection DOAJ
description Over the last several decades active research in the field of materials irradiation by high-energy heavy ions has been worked out. The experiments in this area are labor-consuming and expensive. Therefore the improvement of the existing mathematical models and the development of new ones based on the experimental data of interaction of high-energy heavy ions with materials are of interest. Presently, two approaches are used for studying these processes: a thermal spike model and molecular dynamics methods. The combination of these two approaches – the continuous-atomistic model – will give the opportunity to investigate more thoroughly the processes of irradiation of materials by high-energy heavy ions. To solve the equations of the continuous-atomistic model, a software package was developed and the block of molecular dynamics software was tested on the heterogeneous cluster HybriLIT.
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spelling doaj.art-6b3932e944a0431892aeec08433c15172022-12-21T18:31:00ZengEDP SciencesEPJ Web of Conferences2100-014X2018-01-011730300510.1051/epjconf/201817303005epjconf_mmcp2018_03005Development of Continuum-Atomistic Approach for Modeling Metal Irradiation by Heavy IonsBatgerel BaltDimova StefkaPuzynin IgorPuzynina TaisiaHristov IvanHristova RadoslavaTukhliev ZafarSharipov ZarifOver the last several decades active research in the field of materials irradiation by high-energy heavy ions has been worked out. The experiments in this area are labor-consuming and expensive. Therefore the improvement of the existing mathematical models and the development of new ones based on the experimental data of interaction of high-energy heavy ions with materials are of interest. Presently, two approaches are used for studying these processes: a thermal spike model and molecular dynamics methods. The combination of these two approaches – the continuous-atomistic model – will give the opportunity to investigate more thoroughly the processes of irradiation of materials by high-energy heavy ions. To solve the equations of the continuous-atomistic model, a software package was developed and the block of molecular dynamics software was tested on the heterogeneous cluster HybriLIT.https://doi.org/10.1051/epjconf/201817303005
spellingShingle Batgerel Balt
Dimova Stefka
Puzynin Igor
Puzynina Taisia
Hristov Ivan
Hristova Radoslava
Tukhliev Zafar
Sharipov Zarif
Development of Continuum-Atomistic Approach for Modeling Metal Irradiation by Heavy Ions
EPJ Web of Conferences
title Development of Continuum-Atomistic Approach for Modeling Metal Irradiation by Heavy Ions
title_full Development of Continuum-Atomistic Approach for Modeling Metal Irradiation by Heavy Ions
title_fullStr Development of Continuum-Atomistic Approach for Modeling Metal Irradiation by Heavy Ions
title_full_unstemmed Development of Continuum-Atomistic Approach for Modeling Metal Irradiation by Heavy Ions
title_short Development of Continuum-Atomistic Approach for Modeling Metal Irradiation by Heavy Ions
title_sort development of continuum atomistic approach for modeling metal irradiation by heavy ions
url https://doi.org/10.1051/epjconf/201817303005
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