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Titlebook: Kinetic Theory of Particles and Photons; Theoretical Foundati Joachim Oxenius Book 1986 Springer-Verlag Berlin Heidelberg 1986 Absorption.B

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發(fā)表于 2025-3-21 17:45:43 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Kinetic Theory of Particles and Photons
副標題Theoretical Foundati
編輯Joachim Oxenius
視頻videohttp://file.papertrans.cn/544/543058/543058.mp4
叢書名稱Springer Series in Electronics and Photonics
圖書封面Titlebook: Kinetic Theory of Particles and Photons; Theoretical Foundati Joachim Oxenius Book 1986 Springer-Verlag Berlin Heidelberg 1986 Absorption.B
描述Many laboratory and astrophysical plasmas show deviations from local ther- modynamic equilibrium (LTE). This monograph develops non-LTE plasma spectroscopy as a kinetic theory of particles and photons, considering the radiation field as a photon gas whose distribution function (the radiation in- tensity) obeys a kinetic equation (the radiative transfer equation), just as the distribution functions of particles obey kinetic equations. Such a unified ap- proach provides clear insight into the physics of non-LTE plasmas. Chapter 1 treats the principle of detailed balance, of central importance for understanding the non-LTE effects in plasmas. Chapters 2, 3 deal with kinetic equations of particles and photons, respectively, followed by a chapter on the fluid description of gases with radiative interactions. Chapter 5 is devoted to the H theorem, and closes the more general first part of the book. The last two chapters deal with more specific topics. After briefly discuss- ing optically thin plasmas, Chap. 6 treats non-LTE line transfer by two-level atoms, the line profile coefficients of three-level atoms, and non-Maxwellian electron distribution functions. Chapter 7 discusses topics w
出版日期Book 1986
關鍵詞Absorption; Boltzmann equation; Brownian motion; Photons; Plasma; atoms; distribution; electron; kinetic the
版次1
doihttps://doi.org/10.1007/978-3-642-70728-5
isbn_softcover978-3-642-70730-8
isbn_ebook978-3-642-70728-5Series ISSN 0172-5734
issn_series 0172-5734
copyrightSpringer-Verlag Berlin Heidelberg 1986
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Kinetic Equations of Particles,ns of the kinetic theory (distribution function, kinetic equation, collision term). Section 2.2 discusses the most important elastic collision terms, namely, the Boltzmann and Fokker-Planck terms. Inelastic collision terms corresponding to collisional excitation, de-excitation, ionization, and three
板凳
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The Kinetic Equation of Photons,ines the phenomenological emission and absorption coefficients and the source function. Section 3.2 discusses emission-absorption processes corresponding to bound-bound, free-bound, and free-free transitions, and Sect. 3.3 scattering by stationary and moving particles, respectively.
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H Theorem for Gases and Radiation,like, is used in Sect. 5.1 to derive the entropy and the entropy production rate of material gases and radiation. In Sect. 5.2, the H theorem is proved for three distinct reactions, and it is shown that thermal equilibrium, detailed balance, and vanishing entropy production are equivalent to each ot
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Energy Exchange Between Matter and Radiation,d non-LTE, and of optically thin and optically thick gases. Optically thin plasmas are briefly discussed in Sect. 6.2. Optically thick plasmas are then considered for the special case of two-level atoms, where non-LTE line transfer is treated using a self-consistent approach via the radiative transf
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Appendices,on), and for the specific intensity of the radiation field when passing from one inertial coordinate system to another. In this book, the main application of these formulas is the transformation of radiative quantities from the laboratory (or observer’s) coordinate system to the rest frame of a movi
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o the humanistic rediscovery of his works, the influence of the great ancient physician on Western thought seemed to decline rapidly as new discoveries made his anatomy, physiology, and therapeutics more and more obsolete. In fact, even though Galenism was gradually dismissed as a system, several of
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