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Electron Kinetics and Applications of Glow Discharges (Paperback, Softcover reprint of the original 1st ed. 2002): Uwe... Electron Kinetics and Applications of Glow Discharges (Paperback, Softcover reprint of the original 1st ed. 2002)
Uwe Kortshagen, Lev D. Tsendin
R4,617 Discovery Miles 46 170 Ships in 10 - 15 working days

This book resulted from the NATO Advanced Research Workshop on "Electron Kinetics and Applications of Glow Discharges," held in St. Petersburg, Russia, on May 19-23, 1997. Glow discharges have found widespread applications in many technological processes from the manufacture of semiconductors, to recent developments in na- technology, to the traditional fields of gas lasers, and discharge lamps. Consequently, the interest in the physics of glow discharges has experienced yet another resurgence of interest. While the non-equilibrium character of glow discharges is widely accepted, the opinion still prevails that the main features can be captured by fluid models, and that kinetic treatments are only required for the understanding of subtle details. The erroneousness of this belief is demonstrated by the failure of fluid models to describe many basic features of glow discharges such as, for instance, electrode phenomena, striations, and collisionless heating effects. An adequate description of glow discharges thus has to be of kinetic nature.

Electron Kinetics and Applications of Glow Discharges (Hardcover, 1998 ed.): Uwe Kortshagen, Lev D. Tsendin Electron Kinetics and Applications of Glow Discharges (Hardcover, 1998 ed.)
Uwe Kortshagen, Lev D. Tsendin
R4,995 Discovery Miles 49 950 Ships in 10 - 15 working days

This book resulted from the NATO Advanced Research Workshop on "Electron Kinetics and Applications of Glow Discharges," held in St. Petersburg, Russia, on May 19-23, 1997. Glow discharges have found widespread applications in many technological processes from the manufacture of semiconductors, to recent developments in na- technology, to the traditional fields of gas lasers, and discharge lamps. Consequently, the interest in the physics of glow discharges has experienced yet another resurgence of interest. While the non-equilibrium character of glow discharges is widely accepted, the opinion still prevails that the main features can be captured by fluid models, and that kinetic treatments are only required for the understanding of subtle details. The erroneousness of this belief is demonstrated by the failure of fluid models to describe many basic features of glow discharges such as, for instance, electrode phenomena, striations, and collisionless heating effects. An adequate description of glow discharges thus has to be of kinetic nature.

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