Germanium-Based Technologies

From Materials to Devices

Nonfiction, Science & Nature, Technology, Superconductors & Superconductivity, Science, Physics, Quantum Theory
Cover of the book Germanium-Based Technologies by , Elsevier Science
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9780080474908
Publisher: Elsevier Science Publication: July 28, 2011
Imprint: Elsevier Science Language: English
Author:
ISBN: 9780080474908
Publisher: Elsevier Science
Publication: July 28, 2011
Imprint: Elsevier Science
Language: English

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 and semiconductor processing. The contributing authors are international experts with a world-wide recognition and involved in the leading research in the field.

The book also covers applications and the use of Ge for optoelectronics, detectors and solar cells. An ideal reference work for students and scientists working in the field of physics of semiconductor devices and materials, as well as for engineers in research centres and industry. Both the newcomer and the expert should benefit from this unique book.

  • State-of-the-art information available for the first time as an all-in-source
  • Extensive reference list making it an indispensable reference book
  • Broad coverage from fundamental aspects up to industrial applications
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

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 and semiconductor processing. The contributing authors are international experts with a world-wide recognition and involved in the leading research in the field.

The book also covers applications and the use of Ge for optoelectronics, detectors and solar cells. An ideal reference work for students and scientists working in the field of physics of semiconductor devices and materials, as well as for engineers in research centres and industry. Both the newcomer and the expert should benefit from this unique book.

More books from Elsevier Science

Cover of the book Sugar Esters Microemulsions by
Cover of the book Concerning Amines by
Cover of the book Stability and Stabilization of Biocatalysts by
Cover of the book Handbook of Silicon Wafer Cleaning Technology by
Cover of the book The Language of Shape by
Cover of the book The Ontology of Spacetime II by
Cover of the book Advances in Agronomy by
Cover of the book Applied Coal Petrology by
Cover of the book Selecting and Implementing an Integrated Library System by
Cover of the book A Pharmacology Primer by
Cover of the book Using Information to Develop a Culture of Customer Centricity by
Cover of the book Perspectives on Data Science for Software Engineering by
Cover of the book The Optical Communications Reference by
Cover of the book Nature's Machines by
Cover of the book New Approaches to Prokaryotic Systematics by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy