Elementary Processes in Hydrogen-Helium Plasmas

Elementary Processes in Hydrogen-Helium Plasmas

EnglishEbook
Janev, Ratko K.
Springer Berlin Heidelberg
EAN: 9783642719356
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Atomic and molecular processes play an important role in laboratory and astrophysical plasmas for a wide range of conditions, and determine, in part, their electrical, transport, thermal, and radiation properties. The study of these and other plasma properties requires a knowledge of the cross sections, reaction rate coefficients, and inelastic energy transfers for a variety of collisional reactions. In this review, we provide quantitative information about the most important collision processes occurring in hy- drogen, helium, and hydrogen-helium plasmas in the temperature range from 0. 1 eV to 20 keY. The material presented here is based on published atomic and molecular collision data, theoretical calculations, and appro- priate extrapolation and interpolation procedures. This review gives the properties of each reaction, graphs of the cross sections and reaction rate coeffiCients, and the coefficients of analytical fits for these quantities. We present this information in a form that will enable researchers who are not experts in atomic physics to use the data easily. The authors thank their colleagues at the Princeton Plasma Physics Laboratory and in the atomic physics community who have made many useful suggestions for the selection and presentation o. f t. he material. We gratefully acknowledge the excellent technical assistance of Elizabeth Carey for the typing, and Bernie Giehl for the drafting. This work was supported in part by the U. S. Department of Energy Contract No. DE-AC02-76-CHO-3073. Princeton, USA R. K. Janev W. D. Langer September, 1987 K. Evans, Jr. , D. E.
EAN 9783642719356
ISBN 364271935X
Binding Ebook
Publisher Springer Berlin Heidelberg
Publication date December 6, 2012
Language English
Country Germany
Authors Evans, Kenneth Jr.; Janev, Ratko K.; Langer, William D.; Post, Douglass E. Jr.
Series Springer Series on Atomic, Optical, and Plasma Physics