Microwave Plasma Sources and Methods in Processing Technology. Ladislav Bardos

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has rapidly grown in microwave plasma systems working at atmospheric and higher pressures, in gases and inside liquids. Interesting new applications and trends are described in Chapter 6.

      After an explanation of the functions of microwave components in the typical power lines for the microwave plasma generation, in Chapter 2, we describe the fundamentals of the gas discharge plasma and differences between plasmas generated by different kinds of the power, with particular emphasis to the microwave power. Chapter 3 is devoted to explanations of interactions of plasmas with solid surfaces and gases, mainly at reduced and low pressures. Used explanations are simplified and limited to basic expressions and equations necessary for the understanding of the processes in the plasma and those caused by the plasma, as described in later chapters. Parts of the texts and some illustrations in Chapters 2 and 3 are used in the authors’ courses for university students, short tutorials at companies and, since 1997, in annual courses for the Society of Vacuum Coaters (www.svc.org) in the United States.

      As mentioned, this book has no ambition to become a “handbook” or a “textbook”. We have written an “easy” text to inspire the readers and raise their interest in further studies and designs of novel systems, as well as to help readers in their experimental works with the microwave plasma and the microwave plasma-assisted applications.

      References

      1 [1] D. M. Pozar: “Microwave engineering”, 2nd Ed., John Wiley & Sons Inc., New York, 1996.

      2 [2] J. C. Slater: “Microwave electronics”, D. Van Nostrand Company Inc., New York, 1951.

      3 [3] T. Moreno: “Microwave transmission design data”, Artech House Microwave Library, Boston, MA, 1989. ISBN 089006346X, 9780890063460.

      4 [4] L.S. Polak and Yu.A. Lebedev, eds.: “Plasma Chemistry”, Cambridge International Science Publishing, Cambridge, UK, 1998. ISBN 1898326223, 9781898326229.

      5 [5] M. Moisan and J. Pelletier, eds.: “Microwave Excited Plasmas Vol. 4”, 1st Ed., Elsevier Science, Amsterdam, Netherlands, 1992.

      6 [6] Yu.A. Lebedev, ed.: “Microwave discharges: fundamentals and applications”, Yanus-K, Moscow, 2001. ISBN 5-8037-0066–5.

      7 [7] O.A. Popov, ed.: “High density plasma sources”, Noyes Publications, Park Ridge, NJ, 1995. ISBN 0-8155-1377–1.

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