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Astrophysics of the Diffuse Universe: Astronomy and Astrophysics Library

Autor Michael A. Dopita, Ralph S. Sutherland
en Limba Engleză Hardback – 8 oct 2002
Our purpose in writing this book is to show how physics has been applied to developing our current understanding of the phase structure, physical condi­ tions, chemical makeup and, evolution of the (thermal) interstellar medium. We hope it provides an up-to-date overview which postgraduates, advanced undergraduates, and professionals in astrophysics can use as a "reference of first resort" before going on to read the more specialist monographs or research literature. We have covered the exciting observational results, but without consideration of the experimental techniques or instruments required. An elementary understanding of mathematical physics and of quantum me­ chanics has been assumed, and a knowledge of basic astrophysics would be helpful. Older textbooks on interstellar physics have tended to develop the subject matter in an order which reflects the historical development of the field. Here a more pedagological approach has been adopted, based on our lecture course experience. We cover successively more complex physical systems found in the diffuse universe. Detailed mathematical rigour is eschewed in favour of provid­ ing the reader with a basic physical insight into these systems. Astrophysical problems are treated as practical applications of the physics. In practice, the material is generally ranked in order of decreasing entropy, since the hottest and most diffuse phases tend to be physically less complex.
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Specificații

ISBN-13: 9783540433620
ISBN-10: 3540433627
Pagini: 460
Ilustrații: XIV, 441 p.
Dimensiuni: 155 x 235 x 30 mm
Greutate: 0.77 kg
Ediția:1st ed. 2002. Corr. 2nd printing 2002
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Astronomy and Astrophysics Library

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Graduate

Cuprins

1. What Is the Diffuse Universe?.- 2. Line Emission Processes.- 3. Collisional Excitation.- 4. Line Transfer Effects.- 5. Collisional Ionization Equilibrium.- 6. Continuum and Recombination Line Processes.- 7. Cooling Plasmas.- 8. Interstellar Shocks.- 9. The Theory of Photoionized Regions.- 10. Parameters of Photoionized Regions.- 11. Photoionizing Shocks.- 12. Interstellar Dust.- 13. Introduction to Astrochemistry.- 14. Thermal Phases of Diffuse Matter.- A. Physical Constants.- B. Useful Atomic Data.- B.1 Hydrogenic Spectra.- B.1.1 The Hydrogen Spectrum.- B.1.2 The Helium II Spectrum.- B.2 Abundances.- B.3 Collisional Excitation Data.- B.4 Ionization Potentials.- C. Continuum Data.- C.1 Free-Free Emission.- C.2 Total Free-Free Emission.- C.3 Two-Photon Emission.- D. Rotational Wave function Symmetry.- E. Answers to Selected Exercises.

Textul de pe ultima copertă

The book is designed as an astrophysics textbook to provide a comprehensive introduction to the physics of Interstellar Matter. It is aimed primarily at those undertaking postgraduate courses, or those doing advanced projects as part of honours undergraduate courses in physics or astrophysics. It should also provide a handy reference to the field for astrophysics faculty and other researchers who are not necessarily experts in this particular subdiscipline. The objective of the book is to show how physics can be applied to the understanding and diagnosis of the phase structure, the physical conditions and the chemical make-up and evolution of the interstellar medium. Based on the authors' lecture course experience, here a systematic approach has been adopted to assist the development of the reader's insight into the physics underlying the subject.

Caracteristici

The only textbook to develop the subject matter in a pedagogical approach based on successively more complex physical systems found in the diffuse universe Astrophysics is treated as a practical application of physics Includes supplementary material: sn.pub/extras