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Titlebook: Vibronic Interactions: Jahn-Teller Effect in Crystals and Molecules; Michael D. Kaplan,George O. Zimmerman Book 2001 Springer Science+Busi

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书目名称Vibronic Interactions: Jahn-Teller Effect in Crystals and Molecules
编辑Michael D. Kaplan,George O. Zimmerman
视频video
丛书名称NATO Science Series II: Mathematics, Physics and Chemistry
图书封面Titlebook: Vibronic Interactions: Jahn-Teller Effect in Crystals and Molecules;  Michael D. Kaplan,George O. Zimmerman Book 2001 Springer Science+Busi
描述This book is based mostly on the reports presented at the XVth International lahn-Teller Symposium on Vibronic Interactions in Crystals and Molecules and NATO Advanced Research Workshop Colossal Magnetoresistance and Vibronic Interactions that took place at Boston on August 16-22 of the year 2000. This is the first time the Symposium took place in the USA where recently the giant splash of the attention to the 1 ahn-Teller effect occurred. This tremendous interest to the field all over the world is reflected not only in the numerous publications in many American and European 10urnals, but of the leading scientists from additionally in the Symposium‘s participation the well known Universities, National Laboratories and industrial companies, which was the largest in the history of the Symposium. The renaissance of the 1ahn-Teller physics is closely related to the three fundamental discoveries in science. The most significant among them is the discovery of high-Tc superconductivity by K. -A. Muller and G. Bednorz, for whom the "1ahn-Teller idea" was the motivation in their search. The result of this search is well known - a wide spectrum of the 1ahn-Teller ion based materials with Tc
出版日期Book 2001
关键词Cluster; Implantat; X-ray; mechanics; molecule; scattering; spectroscopy
版次1
doihttps://doi.org/10.1007/978-94-010-0985-0
isbn_softcover978-1-4020-0045-4
isbn_ebook978-94-010-0985-0Series ISSN 1568-2609
issn_series 1568-2609
copyrightSpringer Science+Business Media Dordrecht 2001
The information of publication is updating

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Sum Rules for Jahn-Teller Reduction Factors,ere are fundamental sum-rule relations between first-order RFs that arise due to symmetry considerations. First-order sum rule results obtained recently for icosahedral systems are discussed and the ideas are extended to considerations of the corresponding second-order RFs.
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,Singlet Pairing Amongst Degenerate Electronic States: “Softening Bipolarons”, attributed to the singlets being formed amongst four-fold degenerate icosahedral orbitals. In particular, carriers in highly degenerate states can form a novel type of bipolaron, a “softening bipolaron.” Distinctive features of softening bipolarons result from singlets’ softening the symmetry-breaking vibrational modes to which they are coupled.
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Orbital Ordering and Vibronic States in Manganese Perovskites,e 0.12 ≤ x ≤ 0.17. Three thermodynamically distinguishable ferromagnetic phases could be identified. Dynamic orbital disorder in vibronic phases and dynamic two-phase fluctuations are shown to suppress dramatically the thermal conductivity.
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Exchange Variation of Zero-Field Splitting in Polynuclear Clusters with High-Spin Ground State,ter ZFS parameters change value and sign under the variation of isotropic Heisenberg exchange and double exchange due to the exchange admixture of the excited states. The peculiarities of effective hyperfine constants A. of the [3FeZn-4S]. cluster with S.=5/2 were described in the exchange-resonance model with an admixture of the excited states.
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Giant Negative Magnetoresistance and Strong Electron-Lattice Coupling in Amorphous Semiconductors wous alloys, where a similar explanation applies. The leading role of lattice polaron effect can be checked by measuring isotope effect upon substitution .Si → .Si, which should cause the temperature shift of the conductivity.
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Jahn-Teller Effects in Transition Metal Oxides,eller effects give rise to a unique local atomic structure concomitant with an order-disorder transition. These studies illustrate how significantly the local structure can deviate from the average crystallographic structure and this can critically determine the properties of the solid.
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