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Multiferroic Materials: Properties, Techniques, and Applications: Series in Materials Science and Engineering

Editat de Junling Wang
en Limba Engleză Hardback – 7 sep 2016
"a very detailed book on multiferroics that will be useful for PhD students and researchers interested in this emerging field of materials science"
—Dr. Wilfrid Prellier, Research Director, CNRS, Caen, France
Multiferroics has emerged as one of the hottest topics in solid state physics in this millennium. The coexistence of multiple ferroic/antiferroic properties makes them useful both for fundamental studies and practical applications such as revolutionary new memory technologies and next-generation spintronics devices. This book provides an historical introduction to the field, followed by a summary of recent progress in single-phase multiferroics (type-I and type-II), multiferroic composites (bulk and nano composites), and emerging areas such as domain walls and vortices. Each chapter addresses potential technological implications. There is also a section dedicated to theoretical approaches, both phenomenological and first-principles calculations.
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Specificații

ISBN-13: 9781482251531
ISBN-10: 1482251531
Pagini: 408
Ilustrații: 170
Dimensiuni: 156 x 234 x 28 mm
Greutate: 0.75 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Series in Materials Science and Engineering


Cuprins

Introduction and overview of the field. Type-I multiferroic systems. Type-II multiferroic systems. Multiferroic composites. Theoretical study of multiferroic materials. Applications of multiferroic materials. Emerging phenomena in multiferroics.

Recenzii

"A very detailed book on multiferroics that will be useful for PhD students and researchers interested in this emerging field of materials science." -Dr. Wilfrid Prellier, Research Director, CNRS, Caen, France

Descriere

This book offers a dedicated overview of multiferroic materials, which are defined as materials possessing at least two ferroic or antiferroic simultaneously. It summarizes the major advances in the last decade along with the fundamentals underlying various multiferroic systems. It begins with an introduction to foundational studies followed by chapters devoted to phenomena unique to the main classes: type-I, type-II, and composite multiferroic materials. Next, the chapters address theoretical approaches: phenomenological, first principles calculations, and symmetry analysis. Finally, the book turns to practical applications and emerging studies.