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Titlebook: Atomic Physics 8; Proceedings of the E Ingvar Lindgren (Conference Chairman),Arne Rosén,S Conference proceedings 1983 Plenum Press, New Yor

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发表于 2025-3-21 17:51:27 | 显示全部楼层 |阅读模式
期刊全称Atomic Physics 8
期刊简称Proceedings of the E
影响因子2023Ingvar Lindgren (Conference Chairman),Arne Rosén,S
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图书封面Titlebook: Atomic Physics 8; Proceedings of the E Ingvar Lindgren (Conference Chairman),Arne Rosén,S Conference proceedings 1983 Plenum Press, New Yor
影响因子The Eighth International Conference on Atomic Physics was held at Ch~lmers University of Technology, Goteborg, Sweden on August 2-6, 1982. Following the tradition established by earlier conferences in the series, it was attended by 280 participants from 24 countries. A total of 28 invited talks were delivered at the conference. These talks, which are presented in this volume, covered a wide range of topics in atomic physics in a broad sense. They extend from very basic problems (e.g., the interpretation of quantum mechanics in light of Bell‘s theorem and the feasibility of relativistic many-body calculations) to applied problems (e.g., laser detection of trace elements and spectroscopy of chemisorbed molecules). Professor M.Ya. Amusia was unable to attend the conference but his invited paper is included here. Professor V.S. Letokhov presented a talk entitled "Prospects of Laser Detection of Very Rare Isotopes, but was unable to provide a manuscript. At the conference, 175 post­ ers were presented. Abstracts have been published in a separate volume. It is very much appreciated that all the 1981 Nobel laureates, Nicolaas Bloembergen, Arthur Schawlow and Kai Siegbahn, were able to att
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Dynamics of Resonant States,n process or chemical reaction, more generally any . of the structure of matter. The independent particle model has proved extremely successful for describing and interpreting structures; in fact it is commonly regarded as . theory of atomic systems. This model has also accounted for optical transit
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Impact of Atomic Physics on Fundamental Constants,s of selected areas of such work in addition to the well-known periodic overall studies including least squares adjustments. My intent is neither to offer the scientific depth of the specialized reviews nor to even approach the technical scope of an overall adjustment.
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The Quantum Hall Effect,nd the 10. atoms per cubic centimeter of a semiconductor represent such a complicated system of interacting atoms that its electronic properties are normally described by phenomenological quantities and cannot be deduced from the properties of the isolated atoms. Nevertheless, our measurements on se
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Doppler Narrowing and Collision-Induced Zeeman Coherence in Four-Wave Light Mixing,. Two beams have a frequency ω., which is offset by a fixed amount Δ = ω. - ω. from a resonant line of the Na atom. Their wave vectors, .. and ..′, respectively, lie in the vertical plane. A third beam, at frequency ω., has a wave vector .. in the horizontal plane. In four-wave mixing, the generatio
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Relativistic Effects in Many-Body Systems,the difficulty in defining what a “relativistic effect” might be. As we shall discuss below, relativity in a many-body system necessarily implies the use of QED. Thus, any attempt to differentiate between “relativistic effects” and “QED effects” must be rather arbitrary, and not necessarily desirabl
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One- and Two-Electron Systems,ns are obtainable, high precision comparisons between theory and experiment can be made. Much of the current research interest centers on relativistic and quantum electrodynamic (QED) effects in highly ionized systems. The purpose of the present paper is to summarize recent progress in this area.
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