DocumentCode
1735660
Title
Process models for advanced annealing schemes and their use in device simulation
Author
Pichler, P. ; Martinez-Limia, A. ; Kampen, C. ; Burenkov, A. ; Schermer, J. ; Paul, S. ; Lerch, W. ; Gelpey, J. ; McCoy, S. ; Kheyrandish, H. ; Pakfar, A. ; Tavernier, C. ; Bolze, D.
Author_Institution
Fraunhofer-Inst. of Integrated Syst. & Device Technol., Erlangen
fYear
2008
Firstpage
120
Lastpage
125
Abstract
In industrial environments, technology computer-aided design is used intensively for the design and optimization of new device architectures. To maintain its usefulness for future technology nodes, process simulation has to be able to predict the activation and distribution of dopants after advanced implantation and annealing schemes. Such annealing strategies will be based either on millisecond annealing at high temperatures or solid-phase epitaxial regrowth. In our contribution we will discuss diffusion and activation models for boron and arsenic. The models were calibrated for a wide range of annealing conditions, ranging from low-temperature annealing up to millisecond flash annealing. Special emphasis is given on their implementation into Sentaurus Process and on their application for the simulation of advanced device architectures.
Keywords
annealing; arsenic; boron; ion implantation; semiconductor process modelling; solid phase epitaxial growth; technology CAD (electronics); Sentaurus process; activation models; advanced annealing schemes; advanced implantation schemes; device simulation; diffusion models; low-temperature annealing; millisecond annealing; process models; solid-phase epitaxial regrowth; technology computer-aided design; Boron; Computational modeling; Computer architecture; Computer industry; Design automation; Design optimization; Predictive models; Semiconductor process modeling; Simulated annealing; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Junction Technology, 2008. IWJT '08. Extended Abstracts - 2008 8th International workshop on
Conference_Location
Shanghai
Print_ISBN
978-1-4244-1737-7
Electronic_ISBN
978-1-4244-1738-4
Type
conf
DOI
10.1109/IWJT.2008.4540031
Filename
4540031
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