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Controlling Collective Electronic States in Cuprates and Nickelates : A Resonant X-ray Scattering Study / / by Martin Bluschke



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Autore: Bluschke Martin Visualizza persona
Titolo: Controlling Collective Electronic States in Cuprates and Nickelates : A Resonant X-ray Scattering Study / / by Martin Bluschke Visualizza cluster
Pubblicazione: Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Edizione: 1st ed. 2020.
Descrizione fisica: 1 online resource (XXVI, 151 p. 90 illus., 73 illus. in color.)
Disciplina: 537.623
530.41
Soggetto topico: Condensed matter
Chemistry
Crystallography
Materials—Surfaces
Thin films
Condensed Matter Physics
Chemistry/Food Science, general
Crystallography and Scattering Methods
Surfaces and Interfaces, Thin Films
Nota di contenuto: Introduction -- Resonant X-Ray Scattering -- Introduction to Charge Order in the Cuprates -- Charge Order in (CaxLa1−x)(Ba1.75−xLa0.25+x)Cu3Oy Single Crystals -- Charge Order in YBa2Cu3O6+x Thin Flms -- Introduction to Antiferromagnetism in Ultrathin Nickelate Layers -- Coupling Between 3d and 4f Spin Sublattices in LaNiO3-Based Heterostructures -- Closing Statement.
Sommario/riassunto: In this thesis chemical and epitaxial degrees of freedom are used to manipulate charge and spin ordering phenomena in two families of transition metal oxides, while taking advantage of state-of-the-art resonant x-ray scattering (RXS) methods to characterize their microscopic origin in a comprehensive manner. First, the relationship of charge density wave order to both magnetism and the "pseudogap" phenomenon is systematically examined as a function of charge-carrier doping and isovalent chemical substitution in single crystals of a copper oxide high-temperature superconductor. Then, in copper oxide thin films, an unusual three-dimensionally long-range-ordered charge density wave state is discovered, which persists to much higher temperatures than charge-ordered states in other high-temperature superconductors. By combining crystallographic and spectroscopic measurements, the origin of this phenomenon is traced to the epitaxial relationship with the underlying substrate. This discovery opens new perspectives for the investigation of charge order and its influence on the electronic properties of the cuprates. In a separate set of RXS experiments on superlattices with alternating nickel and dysprosium oxides, several temperature- and magnetic-field-induced magnetic phase transitions are discovered. These observations are explained in a model based on transfer of magnetic order and magneto-crystalline anisotropy between the Ni and Dy subsystems, thus establishing a novel model system for the interplay between transition-metal and rare-earth magnetism.
Titolo autorizzato: Controlling Collective Electronic States in Cuprates and Nickelates  Visualizza cluster
ISBN: 3-030-47902-1
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910412153303321
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Serie: Springer Theses, Recognizing Outstanding Ph.D. Research, . 2190-5053