Spin—Orbit—Topology, a triptych
Identifieur interne : 000187 ( Main/Exploration ); précédent : 000186; suivant : 000188Spin—Orbit—Topology, a triptych
Auteurs : Peter Lemmens [Allemagne] ; Patrice Millet [France]Source :
- Lecture Notes in Physics [ 0075-8450 ] ; 2004.
Abstract
Abstract: Transition metal oxides that realize s=1/2 or s=1 quantum spin systems with low dimensionality or geometrically restricted connectivity are often described using simple concepts. We will discuss superexchange rules, the realization of depleted or open topologies using the lone pair concept and the effect of charge/orbital ordering. These considerations will be widened by a brief overview of important materials based on copper-oxygen, vanadium-oxygen and titaniumoxygen coordinations trying to highlight systematic dependencies with respect to structural and electronic elements or properties, respectively.
Url:
DOI: 10.1007/BFb0119600
Affiliations:
- Allemagne, France
- Bade-Wurtemberg, District de Stuttgart, Midi-Pyrénées, Occitanie (région administrative)
- Stuttgart, Toulouse
Links toward previous steps (curation, corpus...)
Le document en format XML
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<front><div type="abstract" xml:lang="en">Abstract: Transition metal oxides that realize s=1/2 or s=1 quantum spin systems with low dimensionality or geometrically restricted connectivity are often described using simple concepts. We will discuss superexchange rules, the realization of depleted or open topologies using the lone pair concept and the effect of charge/orbital ordering. These considerations will be widened by a brief overview of important materials based on copper-oxygen, vanadium-oxygen and titaniumoxygen coordinations trying to highlight systematic dependencies with respect to structural and electronic elements or properties, respectively.</div>
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