DocumentCode
2573925
Title
New analytic models and efficient parameter extraction for computationally efficient 1-D and 2-D ion implantation modeling
Author
Balamurugan, G. ; Obradovic, B. ; Wang, G. ; Chen, Y. ; Tasch, A.
Author_Institution
Microelectron. Res. Center, Texas Univ., Austin, TX, USA
fYear
1998
fDate
6-9 Dec. 1998
Firstpage
517
Lastpage
520
Abstract
The rapid progress of CMOS process technology has led to increased process complexity and fabrication cost and has created a strong need for accurate and computationally efficient ion implantation models. In this paper, we propose new and improved analytic models for as-implanted impurity and damage profiles in one and two dimensions. The development of models for the as-implanted damage profile is becoming increasingly important, since it is well known that the implant-induced damage has a significant impact on the diffusion of impurities during subsequent thermal treatment, especially under minimal thermal budget conditions. A new approach to 2-D analytic ion implant simulation that takes into account implant-induced damage, and generates 2-D interstitial/vacancy profiles in addition to impurity profiles, is also described. Finally, a methodology is discussed for automating the extraction of model parameters for generating lookup tables.
Keywords
doping profiles; interstitials; ion implantation; semiconductor process modelling; vacancies (crystal); 1D model; 2D model; CMOS process technology; analytic model; computational efficiency; damage profile; impurity diffusion; impurity profile; interstitial; ion implantation; lookup table; parameter extraction; thermal treatment; vacancy; Analytical models; CMOS process; CMOS technology; Costs; Fabrication; Implants; Impurities; Ion implantation; Parameter extraction; Semiconductor device modeling;
fLanguage
English
Publisher
ieee
Conference_Titel
Electron Devices Meeting, 1998. IEDM '98. Technical Digest., International
Conference_Location
San Francisco, CA, USA
ISSN
0163-1918
Print_ISBN
0-7803-4774-9
Type
conf
DOI
10.1109/IEDM.1998.746411
Filename
746411
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