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Titlebook: Electron Spin Resonance of Paramagnetic Crystals; L. A. Sorin,M. V. Vlasova Book 1973 Plenum Press and Israel Program for Scientific Trans

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书目名称Electron Spin Resonance of Paramagnetic Crystals
编辑L. A. Sorin,M. V. Vlasova
视频video
图书封面Titlebook: Electron Spin Resonance of Paramagnetic Crystals;  L. A. Sorin,M. V. Vlasova Book 1973 Plenum Press and Israel Program for Scientific Trans
描述The authors of this contribution to the literature of resonance spectroscopy in paramagnetic systems are primarily concerned with the properties of the rare earth ions and, as such, the formal derivation of crystal field theory is set out in a manner which reflects this dominant interest. The ions of the 3d transition group are perhaps given too cursory a treatment in Chapter Two for those students of RF spectroscopy who have a somewhat less rare-earth oriented interest in the subject. Since the exam­ ples cited in the text do include some 3d transition ions, it is perhaps worthwhile in a preface of this sort to extend the broad theoretical concepts and group characteriza­ tion of Chapter Two to cover, in a somewhat more detailed manner, the derivation of the spin-Hamiltonian for this case. In Chapter Two, mention is made of the fact that for the 4f rare earth ions the spin­ orbit coupling energy is in general large compared to the crystal field influence of the surrounding ligand matrix. In such a case, the quantum number J is a good quantum number for the rare earth ion in question and the crystal field effects are taken into account within 1M, states. In this formulation, which
出版日期Book 1973
关键词crystal; energy; field theory; resonance; spectroscopy
版次1
doihttps://doi.org/10.1007/978-1-4615-8690-6
isbn_softcover978-1-4615-8692-0
isbn_ebook978-1-4615-8690-6
copyrightPlenum Press and Israel Program for Scientific Translations, Ltd. 1973
The information of publication is updating

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Matthew Kahle on the Five-Point Problemopy in the radiofrequency band (10 –100 MHz). He observed induced quantum transitions be tween Zeeman sublevels for parallel and perpendicular orientations of constant and high-frequency magnetic fields, and detected a dependence of the paramagnetic resonance absorption of high-frequency power on th
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Natalia Ward,Nora Vines,Rachael Gabrielspins and the lattice (part of the externally supplied heat is lost to the heat bath), leading eventually to the establishment of thermodynamic equilibrium. The dynamics of this relaxation process is described using such concepts as the relaxation probability, the relaxation rate, and the relaxation
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https://doi.org/10.1007/978-3-319-96086-9Paramagnetic single crystals are diamagnetic (ionic) crystal lattices and spin-systems, formed by ions of the transition elements with incomplete electronic shells.
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Factors Affecting the Signal-to-Noise Ratio,In the following chapters we shall consider processes resulting from the interactions of paramagnetic ions, situated in the electric field of crystal lattices, with constant and variable magnetic fields.
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https://doi.org/10.1007/978-1-349-17395-2EPR line shapes and line widths are known to be highly sensitive to the interactions within the spin system and to spin-lattice interactions. They, in fact, serve as tools for qualitatively estimating these interactions /1—14/.
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