Crystal and Spin Structure and Their Relation to Physical Properties in Some Geometrical and Spin Spiral Multiferroics

Crystal and Spin Structure and Their Relation to Physical Properties in Some Geometrical and Spin Spiral Multiferroics
Author: Naveen Kumar Chogondahalli Muniraju
Publsiher: Forschungszentrum Jülich
Total Pages: 209
Release: 2012
Genre: Electronic Book
ISBN: 9783893368020

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Structure Magnetism and Excitations in Some Mn based Magnetocaloric Effect Compounds

Structure  Magnetism and Excitations in Some Mn based Magnetocaloric Effect Compounds
Author: Michael Gottschlich
Publsiher: Forschungszentrum Jülich
Total Pages: 185
Release: 2013
Genre: Electronic Book
ISBN: 9783893368747

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Programme and Abstracts

Programme and Abstracts
Author: Thomas Brückel
Publsiher: Forschungszentrum Jülich
Total Pages: 197
Release: 2012
Genre: Electronic Book
ISBN: 9783893368075

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Interplay Between Magnetic and Dielectric Phenomena at Transition Metal Oxide Interfaces

Interplay Between Magnetic and Dielectric Phenomena at Transition Metal Oxide Interfaces
Author: Daniel Schumacher
Publsiher: Forschungszentrum Jülich
Total Pages: 142
Release: 2013
Genre: Electronic Book
ISBN: 9783893368556

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Multiferroicity in Oxide Thin Films and Heterostructures

Multiferroicity in Oxide Thin Films and Heterostructures
Author: Artur Glavic
Publsiher: Forschungszentrum Jülich
Total Pages: 173
Release: 2012
Genre: Electronic Book
ISBN: 9783893368037

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Multiferroics

Multiferroics
Author: Andres Cano,Dennis Meier,Morgan Trassin
Publsiher: Walter de Gruyter GmbH & Co KG
Total Pages: 538
Release: 2021-06-21
Genre: Science
ISBN: 9783110581041

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Multiferroics, materials with a coexistence of magnetic and ferroelectric order, provide an efficient route for the control of magnetism by electric fields. The authors cover multiferroic thin-film heterostructures, device architectures and domain/interface effects. They critically discuss achievements as well as limitations and assess opportunities for future applications.

Multiferroic Materials

Multiferroic Materials
Author: Junling Wang
Publsiher: CRC Press
Total Pages: 392
Release: 2016-10-14
Genre: Science
ISBN: 9781482251548

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"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.

Symmetry and Physical Properties of Crystals

Symmetry and Physical Properties of Crystals
Author: Cécile Malgrange,Christian Ricolleau,Michel Schlenker
Publsiher: Springer
Total Pages: 0
Release: 2016-09-10
Genre: Science
ISBN: 9402401776

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Crystals are everywhere, from natural crystals (minerals) through the semiconductors and magnetic materials in electronic devices and computers or piezoelectric resonators at the heart of our quartz watches to electro-optical devices. Understanding them in depth is essential both for pure research and for their applications. This book provides a clear, thorough presentation of their symmetry, both at the microscopic space-group level and the macroscopic point-group level. The implications of the symmetry of crystals for their physical properties are then presented, together with their mathematical description in terms of tensors. The conditions on the symmetry of a crystal for a given property to exist then become clear, as does the symmetry of the property. The geometrical representation of tensor quantities or properties is presented, and its use in determining important relationships emphasized. An original feature of this book is that most chapters include exercises with complete solutions. This allows readers to test and improve their understanding of the material. The intended readership includes undergraduate and graduate students in materials science and materials-related aspects of electrical and optical engineering; researchers involved in the investigation of the physical properties of crystals and the design of applications based on crystal properties such as piezoelectricity, electro-optics, optical activity and all those involved in the characterization of the structural properties of materials.