Search Books
Bursting the Limits of Time…

Amorphous and Liquid Semiconductors

Publisher Springer
Category Science
📄 Viewing lite version Full site ›
🌎 Shop on Amazon — choose country
99.00 USD
🛒 Buy New on Amazon 🇺🇸 🏷 Buy Used — $105.81

✓ Usually ships in 24 hours

Share:
Book Details
PublisherSpringer
ISBN / ASIN1461587077
ISBN-139781461587071
AvailabilityUsually ships in 24 hours
Sales Rank99,999,999
CategoryScience
MarketplaceUnited States 🇺🇸

Description

Solid state physics after solving so successfully many fundamental problems in perfect or slightly imperfect crystals, tried in recent years to attack problems associated with large disorder with the aim to understand the consequences of the lack of the long-range order. Semiconductors are much more changed by disorder than metals or insulators, and appear to be the most suitable materials for fundamental work. Considerable exploratory work on amorphous and liquid semiconductors was done by the Leningrad School since the early fifties. In recent years, much research in several countries was directed to deepen the understanding of the structural, electronic, optical, vibrational, magnetic and other proper­ ties of these materials and to possibly approach the present level of under­ standing of crystalline semiconductors. This effort was stimulated not only by purely scientific interest but also by the possibility of new applications from which memory devices in the general sense are perhaps the most challenging. The research met with serious difficulties which are absent in crystals.
Low and High Dielectric Constant Materials and Their A…
View
From Biology to Sociopolitics: Conceptual Continuity i…
View
Reviews of Plasma Chemistry: Volume 2
View
Application of Short-Term Bioassays in the Fractionati…
View
The Molecular Immunology of Complex Carbohydrates - 2 …
View
Structure, Function and Biogenesis of Energy Transfer …
View
The Interacting Boson Model (Cambridge Monographs on M…
View
Heavy Quark Physics (Cambridge Monographs on Particle …
View
An Introduction to Theoretical Chemistry
View