Light Scattering in Inhomogeneous Atmospheres

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106,99 

ISBN: 3642644171
ISBN 13: 9783642644177
Autor: Yanovitskij, Edgard G
Verlag: Springer Verlag GmbH
Umfang: xvii, 371 S.
Erscheinungsdatum: 16.09.2011
Auflage: 1/1997
Produktform: Kartoniert
Einband: KT

This monograph gives a systematic presentation of the theory of light scattering in the atmosphere. Homogeneous atmospheres, multilayered atmospheres and inhomogeneous atmospheres whose parameters depend continuously on depth are treated. Special attention is paid to obtaining simple asymptotical formulas that have wide-ranging applications. A number of algorithms for the numerical solution of transfer theory problems are described. Examples are given in which the theory is used to solve astrophysical and geophysical problems; other areas to which the theory can be applied are also mentioned. In particular, the rigorous asymptotical theory of weak line formation in multiple scattering is presented. An appendix contains tables of functions and parameters for solving light scattering problems.

Artikelnummer: 4149350 Kategorie:

Beschreibung

This book is aimed at studying the scattering of monochromatic radiation in plane inhomogeneous media. We are dealing with the media whose optical properties depend on a single spatial coordinate, namely of a depth. The most widely known books on radiation transfer, for instance 1. S. Chandrasekhar, Radiative Transfer, Oxford, Clarendon Press, 1950, (RT), 2. V. V. Sobolev, Light Scattering in Planetary Atmospheres, New York, Pergamon Press, 1975, (LSPA), 3. H. C. van de Hulst, Multiple Light Scattering. Tables, Formulas and - plications. Vol. 1,2, New York, Academic Press, 1980, (MLS), treat mainly the homogeneous atmospheres. However, as known, the actual atmospheres of stars and planets, basins of water, and other artificial and nat ural media are not homogeneous. This book deals with the model of vertically inhomogeneous atmosphere, which is closer to reality than the homogeneous models. This book is close to the aforementioned monographs in its scope of prob lems and style. Therefore, I guess that a preliminary knowledge of the con tents of these books, particularly of the book by Sobolev, would facilitate the readers' task substantially. On the other hand, all concepts, problems, and equations used in this book are considered in full in Chap. 1. So, it will be possible for those readers who do not possess the above knowledge to understand this book. A general idea about the content of the book can be gained from both the Introduction and the Table of Contents.

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