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Titlebook: Atomic Inner-Shell Physics; Bernd Crasemann Book 1985 Springer Science+Business Media New York 1985 Cross section.X-ray scattering.atomic

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期刊全稱Atomic Inner-Shell Physics
影響因子2023Bernd Crasemann
視頻videohttp://file.papertrans.cn/165/164738/164738.mp4
學(xué)科分類Physics of Atoms and Molecules
圖書封面Titlebook: Atomic Inner-Shell Physics;  Bernd Crasemann Book 1985 Springer Science+Business Media New York 1985 Cross section.X-ray scattering.atomic
影響因子The physics of atomic inner shells has undergone significant advances in recent years. Fast computers and new experimental tools, notably syn- chrotron-radiation sources and heavy-ion accelerators, have greatly enhan- ced the scope of problems that are accessible. The level of research activity is growing substantially; added incentives are provided by the importance of inner-shell processes in such diverse areas as plasma studies, astrophysics, laser technology, biology, medicine, and materials science. The main reason for all this exciting activity in atomic inner-shell physics, to be sure, lies in the significance of the fundamental problems that are coming within grasp. The large energies of many inner-shell processes cause relativistic and quantum-electrodynamic effects to become strong. Unique opportunities exist for delicate tests of such phenomena as the screening of the electron self-energy and the limits of validity of the present form of the frequency-dependent Breit interaction, to name but two. The many-body problem, which pervades virtually all of physics, presents somewhat less intractable aspects in the atomic inner-shell regime: correlations are relatively weak so
Pindex Book 1985
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Auger-Electron Spectrometry of Core Levels of Atomsas a nonradiative transition, the first systematic experimental and theoretical investigations started only in the mid-1950s. On the experimental side this became possible due to the development of high-resolution .-ray spectrometers which, besides for .-ray spectroscopy, were also used for the stud
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Experimental Evaluation of Inner-Vacancy Level Energies for Comparison with Theoryspecially as regards the deeper lying levels of heavier atoms one is obliged to use a relativistic formulation which entails a number of questions. Firstly any structure which emerges from the Dirac one-electron problem shares with it questions about proper accounting of the role of negative-energy
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Mechanisms for Energy Shifts of Atomic , X Raysns of suitably designed spectrometers, to be discussed in Sec. 2, it is possible to observe minute energy shifts. The main part of the present Chapter is devoted to experiments in which such shifts are observed, and to their interpretation.
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Electron—Atom Bremsstrahlung attention on incident electrons with kinetic energies.. in the 100-eV to 10-MeV range (and especially for 1 keV to 1 MeV) and radiated photons in the vacuum ultraviolet, X-ray, and soft γ-ray regimes. Electron bremsstrahlung is only one particular consequence of the general coupling of the electrom
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