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High and Uniform Phosphorus Doping in Germanium through a Modified Plasma Assisted Delta Doping Process with H2 Plasma Treatment

Title
High and Uniform Phosphorus Doping in Germanium through a Modified Plasma Assisted Delta Doping Process with H2 Plasma Treatment
Author(s)
Jeong, HeejaeKim, Y. S.Baik, SeunghunKang, HongkiJang, Jae EunKwon, Hyuk-Jun
Issued Date
2022-08
Citation
IEEE Electron Device Letters, v.43, no.8, pp.1315 - 1318
Type
Article
Author Keywords
AnnealingDoping profilesGermaniumgermaniumH2 plasma treatmentModified plasma-assisted delta dopingphosphorusPlasma temperaturePlasmasSubstratesSurface treatment
Keywords
N-TYPEION-IMPLANTATIONDIFFUSIONSILICONACTIVATIONDEVICESGE
ISSN
0741-3106
Abstract
To achieve high and uniform phosphorus (P) dopant concentration (more than 1 × 1020 cm-3) near the Germanium (Ge) surface, H2 plasma treatment and modified plasma-assisted delta doping (MPADD) process are proposed and investigated. Sufficient vacancies are formed on the Ge surface using H2 plasma treatment. Consequently, P and vacancies are uniformly included inside during Ge growth through the MPADD process. After the annealing, Phosphorus-vacancy-oxygen (PVO) clusters with the lowest binding energy are formed. Therefore, the migration activation energy increases, and the dopant diffusion into the substrate is reduced. As a result, the surface P dopant concentration (4 × 1021 cm-3) improves, and a uniform P concentration of approximately 5 nm is from the Ge surface. These results show that the MPADD process enables a uniform and high surface doping concentration of recently promising Ge materials and compensates for the disadvantages of conventional delta doping, such as long process time and the need for an ultra-high vacuum system. IEEE
URI
http://hdl.handle.net/20.500.11750/17090
DOI
10.1109/LED.2022.3182730
Publisher
Institute of Electrical and Electronics Engineers
Related Researcher
  • 장재은 Jang, Jae Eun
  • Research Interests Nanoelectroinc device; 생체 신호 센싱 시스템 및 생체 모방 디바이스; 나노 통신 디바이스
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Department of Electrical Engineering and Computer Science Advanced Electronic Devices Research Group(AEDRG) - Kang Lab. 1. Journal Articles

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