DocumentCode
1161751
Title
Verification of analytic point defect models using SUPREM-IV [dopant diffusion]
Author
Law, Mark E. ; Dutton, Robert W.
Author_Institution
Integrated Circuit Lab., Stanford Univ., CA, USA
Volume
7
Issue
2
fYear
1988
fDate
2/1/1988 12:00:00 AM
Firstpage
181
Lastpage
190
Abstract
Two-dimensional process modeling has been complicated by the increasing complexity of the physical models needed to characterize modern processes. Present physical models for diffusion favor modeling of both the vacancies and interstitials as well as the dopant impurities. these vacancies and interstitials are important in two dimensions since the lateral characteristic lengths are on the order of a few microns, which is comparable to device dimensions. Hence, full two-dimensional solutions of the point defect equations are required to accurately model two-dimensional diffusion. Since the defects diffuse many order of magnitude faster than the impurities, the problem of solving the coupled equations is numerically stiff and the numerical techniques become critical. The numerical methods in SUPREM-IV are described. Since the numerical solutions are time consuming, suitable analytic solutions are considered as an alternative. These analytic solutions are compared to the numerical results to test the limits of the assumptions used in the analytic formulation. The comparison forces the conclusion that analytic solutions are of limited use in prediction of point defect profilesin two dimensions
Keywords
diffusion in solids; electronic engineering computing; impurity-defect interactions; interstitials; semiconductor technology; vacancies (crystal); 2D process modelling; SUPREM-IV; analytic point defect models; diffusion; interstitials; lateral characteristic lengths; numerical methods; point defect profiles; two-dimensional diffusion; vacancies; Boron; Differential equations; Equations; Impurities; Nonlinear equations; Oxidation; Semiconductor process modeling; Spontaneous emission; Steady-state; Testing; Virtual colonoscopy;
fLanguage
English
Journal_Title
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
Publisher
ieee
ISSN
0278-0070
Type
jour
DOI
10.1109/43.3148
Filename
3148
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