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Ferroelectric Perovskites for High-Speed Memory : A Mechanism Revealed by Quantum Bonding Motion / by Taku Onishi

By: Resource type: Ressourcentyp: Buch (Online)Book (Online)Language: English Series: Springer eBook CollectionPublisher: Singapore : Springer Nature Singapore, 2022Publisher: Singapore : Imprint: Springer, 2022Edition: 1st ed. 2022Description: 1 Online-Ressource(XVII, 203 p. 132 illus., 127 illus. in color.)ISBN:
  • 9789811926693
Subject(s): Additional physical formats: 9789811926686 | 9789811926709 | 9789811926716 | Erscheint auch als: 9789811926686 Druck-Ausgabe | Erscheint auch als: 9789811926709 Druck-Ausgabe | Erscheint auch als: 9789811926716 Druck-AusgabeDOI: DOI: 10.1007/978-981-19-2669-3Online resources: Summary: Part I Theoretical Background -- 1. Electromagnetism -- 2. Quantum Mechanics -- 3. Quantum Computational Chemistry -- Part II Background of Ferroelectricity -- 4. Basics of Ferroelectricity -- 5. History of Ferroelectric Perovskites -- Part III Origin of Ferroelectricity -- 6. Perovskite Titanium Oxides -- 7. Materials Design -- Part VI Summary and Outlook -- 8. Summary and Future High Speed Memory.Summary: This book is intended for theoretical and experimental researchers who are interested in ferroelectrics and advanced memory. After introducing readers to dielectric, perovskites, advanced memories, and ferroelectric, it explains quantum simulation. Then, using molecular orbital calculation results, it explains the ferroelectric mechanism in perovskite titanium oxides in concrete terms. Lastly, the book examines the materials designed for high-performance ferroelectrics and discusses the future of high-speed memory.PPN: PPN: 1809126924Package identifier: Produktsigel: ZDB-2-CMS | ZDB-2-SEB | ZDB-2-SXC
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