Charge-state effects on charge transfer of helium ions in gold nanosheet

We investigate the charge-state effects on charge transfer of helium ions in gold nanosheet using the time-dependent density functional theory non-adiabatically coupled to the molecular dynamics. In order to characterize and extract the charge-state information of incident particles inside the nanos...

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Main Authors: Ya-Ting Sun, Feng Wang, Su-Na Pang, Fei Mao, Chen-Guang Li
Format: Article
Language:English
Published: IOP Publishing 2023-01-01
Series:New Journal of Physics
Subjects:
Online Access:https://doi.org/10.1088/1367-2630/aceea5
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author Ya-Ting Sun
Feng Wang
Su-Na Pang
Fei Mao
Chen-Guang Li
author_facet Ya-Ting Sun
Feng Wang
Su-Na Pang
Fei Mao
Chen-Guang Li
author_sort Ya-Ting Sun
collection DOAJ
description We investigate the charge-state effects on charge transfer of helium ions in gold nanosheet using the time-dependent density functional theory non-adiabatically coupled to the molecular dynamics. In order to characterize and extract the charge-state information of incident particles inside the nanosheet, we develop two novel computational methods. It is found that the charge transfer behavior of He ion in gold nanosheet is sensitive to its charge state at the time of incident. Analysis of these results allows us to gain new insights in the interaction between He ions and gold nanosheet. This work validates the ability of current methodology in dealing with ion collisions in materials.
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spelling doaj.art-68cf771941594413809d228a9db63c8a2023-08-22T11:06:55ZengIOP PublishingNew Journal of Physics1367-26302023-01-0125808303510.1088/1367-2630/aceea5Charge-state effects on charge transfer of helium ions in gold nanosheetYa-Ting Sun0Feng Wang1https://orcid.org/0000-0002-8514-4497Su-Na Pang2Fei Mao3https://orcid.org/0000-0003-3494-0087Chen-Guang Li4School of Physics, Beijing Institute of Technology , Beijing 100081, People’s Republic of ChinaSchool of Physics, Beijing Institute of Technology , Beijing 100081, People’s Republic of ChinaSchool of Physics, Beijing Institute of Technology , Beijing 100081, People’s Republic of ChinaSchool of Nuclear Science and Technology, University of South China , Hengyang 421001, People’s Republic of ChinaInstitute of Materials, China Academy of Engineering Physics , Mianyang 621908, People’s Republic of ChinaWe investigate the charge-state effects on charge transfer of helium ions in gold nanosheet using the time-dependent density functional theory non-adiabatically coupled to the molecular dynamics. In order to characterize and extract the charge-state information of incident particles inside the nanosheet, we develop two novel computational methods. It is found that the charge transfer behavior of He ion in gold nanosheet is sensitive to its charge state at the time of incident. Analysis of these results allows us to gain new insights in the interaction between He ions and gold nanosheet. This work validates the ability of current methodology in dealing with ion collisions in materials.https://doi.org/10.1088/1367-2630/aceea5atom collisionstopping powercharge transfer
spellingShingle Ya-Ting Sun
Feng Wang
Su-Na Pang
Fei Mao
Chen-Guang Li
Charge-state effects on charge transfer of helium ions in gold nanosheet
New Journal of Physics
atom collision
stopping power
charge transfer
title Charge-state effects on charge transfer of helium ions in gold nanosheet
title_full Charge-state effects on charge transfer of helium ions in gold nanosheet
title_fullStr Charge-state effects on charge transfer of helium ions in gold nanosheet
title_full_unstemmed Charge-state effects on charge transfer of helium ions in gold nanosheet
title_short Charge-state effects on charge transfer of helium ions in gold nanosheet
title_sort charge state effects on charge transfer of helium ions in gold nanosheet
topic atom collision
stopping power
charge transfer
url https://doi.org/10.1088/1367-2630/aceea5
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AT sunapang chargestateeffectsonchargetransferofheliumionsingoldnanosheet
AT feimao chargestateeffectsonchargetransferofheliumionsingoldnanosheet
AT chenguangli chargestateeffectsonchargetransferofheliumionsingoldnanosheet