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Titlebook: Atoms in Plasmas; Valery S. Lisitsa Book 1994 Springer-Verlag Berlin Heidelberg 1994 Atomic collosions.Laser spectrosocopy.Plasma.Plasma r

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Introduction. General Problems of Description of Atomic Spectra in Plasmas,regard to any other influence that could exist. It is true of both radiation and autoionization decay, influence of constant electrical and magnetic fields, dynamic electrical fields, collision of atoms with particles and other processes.
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,Radiation Transition Probabilities and Radiation Kinetics in Kramers’ Electrodynamics,t will be shown that the processes mentioned may be taken into account on the basis of pure classical electrodynamics that is connected with the definite peculiarities of electron motion in attractive potentials (Sect. 2.1).
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Hydrogenic Atom in an Electric Field. Quasiclassical Consideration,96) have provided important confirmations of the validity of the main assumptions of quantum theory. Fundamentals of the quantum theory of the Stark and Zeeman effects are treated in detail in the well known monograph of . and . [5.1], and also in textbooks on quantum mechanics [5.2] and theoretical spectroscopy [5.3].
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Classical Motion in an Atomic Potential. Atomic Structure,trodynamics [2.1, 2]. In accordance with [2.3–6], we shall dwell on a number of classical spectral peculiarities with the attractive potential . playing an important role in the applicability of the classical method to atomic physics. The essence of the problem involves the situation when an emittin
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,Radiation Transition Probabilities and Radiation Kinetics in Kramers’ Electrodynamics,t will be shown that the processes mentioned may be taken into account on the basis of pure classical electrodynamics that is connected with the definite peculiarities of electron motion in attractive potentials (Sect. 2.1).
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Fermi Method of Equivalent Photons and the Probabilities of Radiative-Collisional Transitions in At electron participates while moving along the classical highly curved quasiparabolic orbits [4.1]. We shall demonstrate the applicability of the KrED method to the description of collisional (e.g., excitation of ions by electron impact) and radiative-eollisional (e.g., dielectronic recombination (DR
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