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Dynamics of Hot Electrons in Ultra-thin Metallic Films and Small Structures
Details
Thin-film knowledge and nanometer-structure technology play a crucial role in the high-tech industries. Whilst the major exploitation of thin films has been in microelectronics, there are numerous applications in communications, optical electronics, coatings of all kind, and in energy generation and conservation strategies. The roadmap of the semiconductor industry brings about the strongest need to the production and understanding of thin-films, small structures and semiconductor-metal junctions. Not only the formation and generating of nanometer structures are known to be quite intricate, but also the electron behavior in such solids with limited extensions.Besides theoretical description of electrons in a bulk and at surfaces of metals and semiconductors, the interaction of light with a medium and the classical dispersion theory are shown here. It follows then the concept of plasmons and the 3d-Fermi-liquid theory, which is briefly sketched and widely applied to electron-electron interaction in 2d and smaller structures.This book is useful for researchers, engineers and practitioners in science and industry, as well as for everyone, interested in nanotechnology.
Autorentext
Dipl. Phys. ETH: Studies of physics at the Swiss Federal Institute of Technology, Zurich, Switzerland and the universities of Essen and Kaiserslautern, Germany. Senior quantitative analyst and senior project leader within group risk management and strategic risk management in the financial industry.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783836497756
- Sprache Englisch
- Genre Physik & Astronomie
- Größe H10mm x B220mm x T150mm
- Jahr 2013
- EAN 9783836497756
- Format Kartonierter Einband (Kt)
- ISBN 978-3-8364-9775-6
- Titel Dynamics of Hot Electrons in Ultra-thin Metallic Films and Small Structures
- Autor Ron Porath
- Untertitel Theory and Experiments:Electron Lifetime, Plasmons, Quantum Well States
- Gewicht 261g
- Herausgeber VDM Verlag Dr. Müller e.K.
- Anzahl Seiten 164