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Germanium-Based Technologies : From Materials to Devices.

Author: Cor Claeys; Eddy Simoen
Publisher: Amsterdam : Elsevier Science, 2014.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Germanium is a semiconductor material that formed the basis for the development of transistor technology. Although the breakthrough of planar technology and integrated circuits put silicon in the foreground, in recent years there has been a renewed interest in germanium, which has been triggered by its strong potential for deep submicron (sub 45 nm) technologies. Germanium-Based technologies: From Materials to  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Claeys, Cor.
Germanium-Based Technologies : From Materials to Devices.
Amsterdam : Elsevier Science, ©2014
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Cor Claeys; Eddy Simoen
ISBN: 9780080474908 008047490X
OCLC Number: 1048460254
Description: 1 online resource (476 pages)
Contents: Front Cover; Copyright Page; Germanium-Based Technologies; Contents; Editors; Contributors; List of Acronyms; List of Symbols; Introduction; 1 Introduction; 2 Historical Perspective and Milestones; 3 Ge as a Novel ULSI Substrate: Opportunities and Challenges; 4 Outline of the Book; References; Chapter 1 Germanium Materials; 1.1 Introduction; 1.2 Bulk Wafer Manufacturing; 1.2.1 Germanium raw materials: supply and production flow sheet; 1.2.1.1 Supply; 1.2.1.2 Production flow sheet; 1.2.2 Germanium crystal growth; 1.2.2.1 Introduction and specific features of Czochralski Ge crystal growth. 1.2.2.2 Ge single crystals for IR optics1.2.2.3 HP-Ge crystals for radiation detectors; 1.2.2.4 Dislocation-free Ge crystals; 1.2.2.5 Modeling of Ge crystal growth; 1.2.3 Germanium wafer manufacturing; 1.2.3.1 Introduction; 1.2.3.2 Wafer preparation: general remarks; 1.2.3.3 Wafer preparation: process steps; 1.2.3.4 Germanium recycling; 1.3 GOI Substrates; 1.3.1 Back-grind SOI; 1.3.2 GOI substrates by layer transfer; 1.3.2.1 Donor wafers; 1.3.2.2 GOI realization; 1.3.2.3 Characterization of GOI substrates; 1.3.2.4 GOI MOSFETs; 1.3.2.5 GOI as III-V epitaxy template; 1.4 General Conclusion. 2.4.4 Dislocation nucleation and multiplication during crystal pulling2.4.5 Electrical impact of dislocations in germanium; 2.5 Point Defect Clustering; 2.5.1 Experimental observations of vacancy clustering; 2.5.2 Modeling and simulation of vacancy cluster formation; 2.6 Conclusions; Acknowledgements; References; Chapter 3 Diffusion and Solubility of Dopants in Germanium; 3.1 Introduction; 3.2 Diffusion in Semiconductors; 3.2.1 Diffusion mechanisms; 3.2.2 Self-diffusion; 3.3 Intrinsic Point Defects in Germanium; 3.3.1 Quenching; 3.3.2 Irradiation. 3.4 Self- and Group IV Diffusion in Germanium and Silicon3.4.1 Radioactive tracer experiments; 3.4.2 Isotope effects and Group IV (Si; Sn) diffusion in Ge; 3.4.3 Doping and pressure effects; 3.4.4 Diffusion of Ge in Si; 3.5 Solubility of Impurities in Germanium; 3.6 Diffusion of Group III and V Dopants in Germanium; 3.6.1 Group III acceptor diffusion; 3.6.1.1 Boron; 3.6.1.2 Aluminum; 3.6.1.3 Indium and gallium; 3.6.2 Group V donor diffusion; 3.6.2.1 Phosphorus; 3.6.2.2 Arsenic; 3.6.2.3 Antimony; 3.6.3 Electric field effects on dopant diffusion in Ge; 3.6.4 Summary; 3.7 General Conclusion.

Abstract:

Germanium is a semiconductor material that formed the basis for the development of transistor technology. Although the breakthrough of planar technology and integrated circuits put silicon in the foreground, in recent years there has been a renewed interest in germanium, which has been triggered by its strong potential for deep submicron (sub 45 nm) technologies. Germanium-Based technologies: From Materials to Devices is the first book to provide a broad, in-depth coverage of the field, including recent advances in Ge-technology and the fundamentals in material science, device physics a.

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