Publication series : Ion Implantation - Research and Application
Author: Yanina G. Fedorenko
Publisher: IntechOpen
Publication year: 2017
E-ISBN: INT6552867760
P-ISBN(Paperback): 9789535132370
P-ISBN(Hardback): 9789535132387
Subject: O414 Thermodynamics and Statistical Physics;TH Machinery and Instrument Industry
Keyword: Energy technology & engineering,热力学与统计物理学
Language: ENG
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Ion-Beam-Induced Defects in CMOS Technology: Methods of Study
Description
Ion implantation is a nonequilibrium doping technique, which introduces impurity atoms into a solid regardless of thermodynamic considerations. The formation of metastable alloys above the solubility limit, minimized contribution of lateral diffusion processes in device fabrication, and possibility to reach high concentrations of doping impurities can be considered as distinct advantages of ion implantation. Due to excellent controllability, uniformity, and the dose insensitive relative accuracy ion implantation has grown to be the principal doping technology used in the manufacturing of integrated circuits. Originally developed from particle accelerator technology, ion implanters operate in the energy range from tens eV to several MeV (corresponding to a few nms to several microns in depth range). Ion implantation introduces point defects in solids. Very minute concentrations of defects and impurities in semiconductors drastically alter their electrical and optical properties. This chapter presents methods of defect spectroscopy to study the defect origin and characterize the defect density of states in thin film and semiconductor interfaces. The methods considered are positron annihilation spectroscopy, electron spin resonance, and approaches for electrical characterization of semiconductor devices.
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