Molecular Dynamics Simulations of Vacancy Generation and Migration near a Monocrystalline Silicon Surface during Energetic Cluster Ion Implantation; Coatings; Vol. 10, iss. 2

Detaylı Bibliyografya
Parent link:Coatings
Vol. 10, iss. 2.— 2020.— [146, 10 p. ]
Müşterek Yazar: Национальный исследовательский Томский политехнический университет Инженерная школа новых производственных технологий Научно-производственная лаборатория "Импульсно-пучковых, электроразрядных и плазменных технологий"
Diğer Yazarlar: Liang Guoying, Zhong Haowen, Wang Younian, Zhang Shijian, Xu Mofei, Kuang Shicheng, Ren Jianhui, Zhang Nan, Yan Sha, Yu Xiao, Remnev G. E. Gennady Efimovich, Le Xiaoyun
Özet:The process of ion implantation often involves vacancy generation and migration. The vacancy generation and migration near a monocrystalline silicon surface during three kinds of energetic Si35 cluster ion implantations were investigated by molecular dynamics simulations in the present work. The patterns of vacancy generation and migration, as well as the implantation-induced amorphous structure, were analyzed according to radial distribution function, Wigner–Seitz cell, and identify diamond structure analytical methods. A lot of vacancies rapidly generate and migrate in primary directions and form an amorphous structure in the first two picoseconds. The cluster with higher incident kinetic energy can induce the generation and migration of more vacancies and a deeper amorphous structure. Moreover, boundaries have a loading–unloading effect, where interstitial atoms load into the boundary, which then acts as a source, emitting interstitial atoms to the target and inducing the generation of vacancies again. These results provide more insight into doping silicon via ion implantation.
Dil:İngilizce
Baskı/Yayın Bilgisi: 2020
Konular:
Online Erişim:https://doi.org/10.3390/coatings10020146
Materyal Türü: Elektronik Kitap Bölümü
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=663978

MARC

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200 1 |a Molecular Dynamics Simulations of Vacancy Generation and Migration near a Monocrystalline Silicon Surface during Energetic Cluster Ion Implantation  |f Liang Guoying, Zhong Haowen, Wang Younian [et al.] 
203 |a Text  |c electronic 
320 |a [References: 26 tit.] 
330 |a The process of ion implantation often involves vacancy generation and migration. The vacancy generation and migration near a monocrystalline silicon surface during three kinds of energetic Si35 cluster ion implantations were investigated by molecular dynamics simulations in the present work. The patterns of vacancy generation and migration, as well as the implantation-induced amorphous structure, were analyzed according to radial distribution function, Wigner–Seitz cell, and identify diamond structure analytical methods. A lot of vacancies rapidly generate and migrate in primary directions and form an amorphous structure in the first two picoseconds. The cluster with higher incident kinetic energy can induce the generation and migration of more vacancies and a deeper amorphous structure. Moreover, boundaries have a loading–unloading effect, where interstitial atoms load into the boundary, which then acts as a source, emitting interstitial atoms to the target and inducing the generation of vacancies again. These results provide more insight into doping silicon via ion implantation. 
461 |t Coatings 
463 |t Vol. 10, iss. 2  |v [146, 10 p. ]  |d 2020 
610 1 |a труды учёных ТПУ 
610 1 |a электронный ресурс 
610 1 |a molecular dynamics 
610 1 |a vacancy 
610 1 |a silicon 
610 1 |a cluster 
610 1 |a implantation 
610 1 |a вакансии 
610 1 |a кремний 
610 1 |a кластеры 
610 1 |a имплантация 
701 0 |a Liang Guoying 
701 0 |a Zhong Haowen 
701 0 |a Wang Younian 
701 0 |a Zhang Shijian 
701 0 |a Xu Mofei 
701 0 |a Kuang Shicheng 
701 0 |a Ren Jianhui 
701 0 |a Zhang Nan 
701 0 |a Yan Sha 
701 0 |a Yu Xiao 
701 1 |a Remnev  |b G. E.  |c physicist  |c Professor of Tomsk Polytechnic University, Doctor of technical sciences  |f 1948-  |g Gennady Efimovich  |3 (RuTPU)RU\TPU\pers\31500 
701 0 |a Le Xiaoyun 
712 0 2 |a Национальный исследовательский Томский политехнический университет  |b Инженерная школа новых производственных технологий  |b Научно-производственная лаборатория "Импульсно-пучковых, электроразрядных и плазменных технологий"  |3 (RuTPU)RU\TPU\col\23502 
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