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Titlebook: Electron and Magnetization Densities in Molecules and Crystals; Pierre Becker (Director of the Institute) Book 1980 Springer Science+Busin

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書目名稱Electron and Magnetization Densities in Molecules and Crystals
編輯Pierre Becker (Director of the Institute)
視頻videohttp://file.papertrans.cn/307/306177/306177.mp4
叢書名稱Nato ASI Subseries B:
圖書封面Titlebook: Electron and Magnetization Densities in Molecules and Crystals;  Pierre Becker (Director of the Institute) Book 1980 Springer Science+Busin
描述The interest of describing the ground state properties of a system in terms of one electron density (or its two spin components) is obvious, in particular due to the simple physical significance of this function. Recent experimental progress in diffraction made the measurement of charge and magnetization densities in crystalline solids possible, with an accuracy at least as good as theoretical accuracy. Theoretical developments of the many-body problem have proved the extreme importance of the one electron density function and presently, accurate methods of band structure determination become available. Parallel to the diffraction techniques, other domains of research (inelastic scattering, resonance, molecular spectroscopy) deal with quantities directly related to the one particle density. But the two types of studies do not interfere enough and one should obviously gain more information by interpreting all experiments that are related to the density together. It became necessary to have an International School that reviews the status of the art in the domain of "ELECTRON AND MAGNETIZATION DENSITIES IN MOLECULES AND CRYSTALS". This was made possible through the generous effort of
出版日期Book 1980
關(guān)鍵詞Fourier transform; crystal; development; diffraction; energy; hydrogen; information; molecule; research; reso
版次1
doihttps://doi.org/10.1007/978-1-4684-1018-1
isbn_softcover978-1-4684-1020-4
isbn_ebook978-1-4684-1018-1
copyrightSpringer Science+Business Media New York 1980
The information of publication is updating

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Charge and Spin Densities in Solidsscription orsolids. Following the pioneering work of Thomas (1926) and Fermi (1928), in which the electronic properties of heavy atoms were described by the electron density, two parallel descriptions of electron states have been employed:.(i) Using one-body wave functions ., the Hartree and Hartree
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Extinction and Ferroelectric Transition in RbH2PO4as been used to investigate the behaviour of the integrated reflectivity R with temperature. The reflections (200) and (600) have been measured, with a symmetric Laue geometry. The results are given in table 1. The results are reversible as a function of temperature variation.
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