R-Matrix Theory of Atomic Collisions: Application to Atomic, Molecular and Optical Processes: 61 2011th Edition

R-Matrix Theory of Atomic Collisions: Application to Atomic, Molecular and Optical Processes: 61 2011th Edition book cover

R-Matrix Theory of Atomic Collisions: Application to Atomic, Molecular and Optical Processes: 61 2011th Edition

Author(s): Philip George Burke (Author)

  • Publisher: Springer
  • Publication Date: 21 April 2013
  • Edition: 2011th
  • Language: English
  • Print length: 764 pages
  • ISBN-10: 3642267580
  • ISBN-13: 9783642267581

Book Description

Commencing with a self-contained overview of atomic collision theory, this monograph presents recent developments of R-matrix theory and its applications to a wide-range of atomic molecular and optical processes. These developments include the electron and photon collisions with atoms, ions and molecules which are required in the analysis of laboratory and astrophysical plasmas, multiphoton processes required in the analysis of superintense laser interactions with atoms and molecules and positron collisions with atoms and molecules required in antimatter studies of scientific and technologial importance. Basic mathematical results and general and widely used R-matrix computer programs are summarized in the appendices.

Editorial Reviews

Review

From the reviews:

“This work is a fundamental monograph devoted to the R-matrix theory … . The author describes a generalized R-matrix theory of atomic collisions and its application to the ab initio study of atomic, molecular and optical collision processes. It is written for physicists … .” (Michael Perelmuter, Zentralblatt MATH, Vol. 1223, 2011)

From the Back Cover

Commencing with a self-contained overview of atomic collision theory, this monograph presents recent developments of R-matrix theory and its applications to a wide-range of atomic molecular and optical processes. These developments include electron and photon collisions with atoms, ions and molecules required in the analysis of laboratory and astrophysical plasmas, multiphoton processes required in the analysis of superintense laser interactions with atoms and molecules and positron collisions with atoms and molecules required in antimatter studies of scientific and technologial importance. Basic mathematical results and general and widely used R-matrix computer programs are summarized in the appendices.

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