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Nitrogen Engineering in the Ultrathin SiO2 Interface Layer of High- k CMOS Devices: A First-Principles Investigation of Fluorine, Oxygen, and Boron Defect Migration

 
: Lazarevic, F.; Leitsmann, R.; Drescher, M.; Erben, E.; Plänitz, P.; Schreiber, M.

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IEEE transactions on electron devices 64 (2017), No.12, pp.5073-5080
ISSN: 0018-9383
English
Journal Article
Fraunhofer IPMS ()

Abstract
The further development of future semiconductor devices necessitates methods for characterization on an atomic scale. This ab initio investigation reveals consequences of nitrogen treatment of the state-of-the-art high-k gate-stacks. The model allows a profound characterization of the SiO 2 interface layer for different impurity concentrations. The presented results explain recent experimental observations qualitatively as well as quantitatively. Beyond that, a fundamental understanding is given, which can be used as an essential instrument for future reliability engineering.

: http://publica.fraunhofer.de/documents/N-502995.html