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High Density Plasma Sources: Design, Physics and Performance (Materials Science and Process Technology Series)
 
 
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High Density Plasma Sources: Design, Physics and Performance (Materials Science and Process Technology Series) [Hardcover]

Oleg A. Popov (Author, Editor)

Price: $190.00 & this item ships for FREE with Super Saver Shipping. Details
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Book Description

January 14, 1997 0815513771 978-0815513773 1
This book describes the design, physics, and performance of high density plasma sources which have been extensively explored in low pressure plasma processing, such as plasma etching and planarization, plasma enhanced chemical vapor deposition of thin films, sputtered deposition of metals and dielectrics, epitaxial growth of silicon and GaAs, and many other applications.

This is a comprehensive survey and a detailed description of most advanced high density plasma sources used in plasma processing. The book is a balanced presentation in that it gives both a theoretical treatment and practical applications. It should be of considerable interest to scientists and engineers working on plasma source design, and process development.

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About the Author

Oleg A. Popov is presently a research and development engineer at the Matsushita Electric Works, R&D Laboratory in Wobum, Massachusetts. After earning his doctorate in plasma physics from Moscow University, he worked on the physics of low pressure RF discharges. Since 1984 Dr. Popov has been involved in the design, studies and development of RF and microwave plasma sources used in plasma processing such as plasma and ion beam etching, PACVD, and ion implantation.


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Inside This Book (learn more)
First Sentence:
Low-frequency whistler waves are well known in ionospheric research because of their insensitivity to variations in plasma density and magnetic field. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
multipolar discharges, multipolar magnetic confinement, helicon discharges, peripheral ionization, plasma homogeneity, capacitive plasmas, inductive plasma source, microwave coupling efficiency, minimum sustaining voltage, multipolar magnetic structure, launcher input, waveguide surfatron, multipolar magnetic field, window magnetic field, plasma uniformity, wave launcher, multipolar confinement, quartz discharge chamber, linear applicators, plasma inductance, field applicator, helicon sources, launching gap, high density plasma sources, magnet rows
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Plasma Phys, Plasma Sources Sci, Nagoya Type, Plasma Sci, Michigan State University, Microwave Excited Plasmas, New York, Reactive Plasmas, Bell Laboratories, Electron Device Lett, Ionized Gases, Academic Press, Activated Reactive Evaporation, Dry Process Symp, Gaseous Electronics Conference, Monte Carlo, Nagoya University, Physics of Thin Films, Typical Type
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