Symposium A: Domain Structure Related Ferroic Properties and New Functional Materials. Symposium B: Fabrication, Characterization and Application of Molecular Thin Films - Structural Analysis and Control Toward the Realization of Novel Functions. Symposium F: Recent Progress in Nano-structured Materials - Structure, Function and Applications

Symposium A: Domain Structure Related Ferroic Properties and New Functional Materials. Symposium B: Fabrication, Characterization and Application of Molecular Thin Films - Structural Analysis and Control Toward the Realization of Novel Functions. Symposium F: Recent Progress in Nano-structured Materials - Structure, Function and Applications
Author: Materials Research Society of Japan
Publisher:
Total Pages: 188
Release: 2008
Genre:
ISBN:

Download Symposium A: Domain Structure Related Ferroic Properties and New Functional Materials. Symposium B: Fabrication, Characterization and Application of Molecular Thin Films - Structural Analysis and Control Toward the Realization of Novel Functions. Symposium F: Recent Progress in Nano-structured Materials - Structure, Function and Applications Book in PDF, Epub and Kindle

Symposium A: Domain Structure Related Ferroic Properties and New Functional Materials. Symposium E: Solid State Reaction - Basic Science and Chemistry for Advanced Materials by Reaction Control in Nanosize Region. Symposium G: Structural Analysis of Buried Interfaces Using Quantum Beam Technologies

Symposium A: Domain Structure Related Ferroic Properties and New Functional Materials. Symposium E: Solid State Reaction - Basic Science and Chemistry for Advanced Materials by Reaction Control in Nanosize Region. Symposium G: Structural Analysis of Buried Interfaces Using Quantum Beam Technologies
Author: Materials Research Society of Japan
Publisher:
Total Pages: 304
Release: 2007
Genre:
ISBN:

Download Symposium A: Domain Structure Related Ferroic Properties and New Functional Materials. Symposium E: Solid State Reaction - Basic Science and Chemistry for Advanced Materials by Reaction Control in Nanosize Region. Symposium G: Structural Analysis of Buried Interfaces Using Quantum Beam Technologies Book in PDF, Epub and Kindle

Symposium A: Domain Structure Related Ferroic Propertiesand New Functional Materials. Symposium G: Technology of Dielectric Thin Films for Future Electric Devices - Control of the Interface and the Nano-structure. Symposium O: Novel Functions of Nano-interfaces: Understanding and Design of Their Chemical, Mechanical and Electronic Properties

Symposium A: Domain Structure Related Ferroic Propertiesand New Functional Materials. Symposium G: Technology of Dielectric Thin Films for Future Electric Devices - Control of the Interface and the Nano-structure. Symposium O: Novel Functions of Nano-interfaces: Understanding and Design of Their Chemical, Mechanical and Electronic Properties
Author: Materials Research Society of Japan
Publisher:
Total Pages: 230
Release: 2006
Genre:
ISBN:

Download Symposium A: Domain Structure Related Ferroic Propertiesand New Functional Materials. Symposium G: Technology of Dielectric Thin Films for Future Electric Devices - Control of the Interface and the Nano-structure. Symposium O: Novel Functions of Nano-interfaces: Understanding and Design of Their Chemical, Mechanical and Electronic Properties Book in PDF, Epub and Kindle

Domains in Ferroic Crystals and Thin Films

Domains in Ferroic Crystals and Thin Films
Author: Alexander Tagantsev
Publisher: Springer Science & Business Media
Total Pages: 828
Release: 2011-03-02
Genre: Science
ISBN: 1441914226

Download Domains in Ferroic Crystals and Thin Films Book in PDF, Epub and Kindle

At present, the marketplace for professionals, researchers, and graduate students in solid-state physics and materials science lacks a book that presents a comprehensive discussion of ferroelectrics and related materials in a form that is suitable for experimentalists and engineers. This book proposes to present a wide coverage of domain-related issues concerning these materials. This coverage includes selected theoretical topics (which are covered in the existing literature) in addition to a plethora of experimental data which occupies over half of the book. The book presents experimental findings and theoretical understanding of ferroic (non-magnetic) domains developed during the past 60 years. It addresses the situation by looking specifically at bulk crystals and thin films, with a particular focus on recently-developed microelectronic applications and methods for observations of domains with techniques such as scanning force microscopy, polarized light microscopy, scanning optical microscopy, electron microscopy, and surface decorating techniques. "Domains in Ferroic Crystals and Thin Films" covers a large area of material properties and effects connected with static and dynamic properties of domains, which are extremely relevant to materials referred to as ferroics. In other textbooks on solid state physics, one large group of ferroics is customarily covered: those in which magnetic properties play a dominant role. Numerous books are specifically devoted to magnetic ferroics and cover a wide spectrum of magnetic domain phenomena. In contrast, "Domains in Ferroic Crystals and Thin Films" concentrates on domain-related phenomena in nonmagnetic ferroics. These materials are still inadequately represented in solid state physics textbooks and monographs.

Topological Structures in Ferroic Materials

Topological Structures in Ferroic Materials
Author: Jan Seidel
Publisher: Springer
Total Pages: 249
Release: 2016-02-12
Genre: Science
ISBN: 3319253018

Download Topological Structures in Ferroic Materials Book in PDF, Epub and Kindle

This book provides a state-of-the art overview of a highly interesting emerging research field in solid state physics/nanomaterials science, topological structures in ferroic materials. Topological structures in ferroic materials have received strongly increasing attention in the last few years. Such structures include domain walls, skyrmions and vortices, which can form in ferroelectric, magnetic, ferroelastic or multiferroic materials. These topological structures can have completely different properties from the bulk material they form in. They also can be controlled by external fields (electrical, magnetic, strain) or currents, which makes them interesting from a fundamental research point of view as well as for potential novel nanomaterials applications. To provide a comprehensive overview, international leading researches in these fields contributed review-like chapters about their own work and the work of other researchers to provide a current view of this highly interesting topic.

Ferroic Materials Based Technologies

Ferroic Materials Based Technologies
Author: Inamuddin
Publisher: John Wiley & Sons
Total Pages: 356
Release: 2024-07-03
Genre: Technology & Engineering
ISBN: 1394238150

Download Ferroic Materials Based Technologies Book in PDF, Epub and Kindle

FERROIC MATERIALS-BASED TECHNOLOGIES The book addresses the prospective, relevant, and original research developments in the ferroelectric, magnetic, and multiferroic fields. Ferroic materials have sparked widespread attention because they represent a broad spectrum of elementary physics and are employed in a plethora of fields, including flexible memory, enormous energy harvesting/storage, spintronic functionalities, spin caloritronics, and a large range of other multi-functional devices. With the application of new ferroic materials, strong room-temperature ferroelectricity with high saturation polarization may be established in ferroelectric materials, and magnetism with significant magnetization can be accomplished in magnetic materials. Furthermore, magnetoelectric interaction between ferroelectric and magnetic orderings is high in multiferroic materials, which could enable a wide range of innovative devices. Magnetic, ferroelectric, and multiferroic 2D materials with ultrathin characteristics above ambient temperature are often expected to enable future miniaturization of electronics beyond Moore’s law for energy-efficient nanodevices. This book addresses the prospective, relevant, and original research developments in the ferroelectric, magnetic, and multiferroic fields. Audience The book will interest materials scientists, physicists, and engineers working in ferroic and multiferroic materials.

Domain Walls

Domain Walls
Author: Dennis Meier
Publisher: Oxford University Press
Total Pages: 288
Release: 2020-08-07
Genre: Science
ISBN: 0192607413

Download Domain Walls Book in PDF, Epub and Kindle

Technological evolution and revolution are both driven by the discovery of new functionalities, new materials and the design of yet smaller, faster, and more energy-efficient components. Progress is being made at a breathtaking pace, stimulated by the rapidly growing demand for more powerful and readily available information technology. High-speed internet and data-streaming, home automation, tablets and smartphones are now "necessities" for our everyday lives. Consumer expectations for progressively more data storage and exchange appear to be insatiable. Oxide electronics is a promising and relatively new field that has the potential to trigger major advances in information technology. Oxide interfaces are particularly intriguing. Here, low local symmetry combined with an increased susceptibility to external fields leads to unusual physical properties distinct from those of the homogeneous bulk. In this context, ferroic domain walls have attracted recent attention as a completely new type of oxide interface. In addition to their functional properties, such walls are spatially mobile and can be created, moved, and erased on demand. This unique degree of flexibility enables domain walls to take an active role in future devices and hold a great potential as multifunctional 2D systems for nanoelectronics. With domain walls as reconfigurable electronic 2D components, a new generation of adaptive nano-technology and flexible circuitry becomes possible, that can be altered and upgraded throughout the lifetime of the device. Thus, what started out as fundamental research, at the limit of accessibility, is finally maturing into a promising concept for next-generation technology.

Ferroic Functional Materials

Ferroic Functional Materials
Author: Jörg Schröder
Publisher: Springer
Total Pages: 293
Release: 2017-11-23
Genre: Technology & Engineering
ISBN: 3319688839

Download Ferroic Functional Materials Book in PDF, Epub and Kindle

The book covers experiments and theory in the fields of ferroelectrics, ferromagnets, ferroelastics, and multiferroics. Topics include experimental preparation and characterization of magnetoelectric multiferroics, the modeling of ferroelectric and ferromagnetic materials, the formation of ferroic microstructures and their continuum-mechanical modeling, computational homogenization, and the algorithmic treatment in the framework of numerical solution strategies.

Frustrated Materials and Ferroic Glasses

Frustrated Materials and Ferroic Glasses
Author: Turab Lookman
Publisher: Springer
Total Pages: 276
Release: 2018-11-01
Genre: Science
ISBN: 3319969145

Download Frustrated Materials and Ferroic Glasses Book in PDF, Epub and Kindle

This book provides a comprehensive introduction to ferroics and frustrated materials. Ferroics comprise a range of materials classes with functionalities such as magnetism, polarization, and orbital degrees of freedom and strain. Frustration, due to geometrical constraints, and disorder, due to chemical and/or structural inhomogeneities, can lead to glassy behavior, which has either been directly observed or inferred in a range of materials classes from model systems such as artificial spin ice, shape memory alloys, and ferroelectrics to electronically functional materials such as manganites. Interesting and unusual properties are found to be associated with these glasses and have potential for novel applications. Just as in prototypical spin glass and structural glasses, the elements of frustration and disorder lead to non-ergodocity, history dependence, frequency dependent relaxation behavior, and the presence of inhomogeneous nano clusters or domains. In addition, there are new states of matter, such as spin ice; however, it is still an open question as to whether these systems belong to the same family or universality class. The purpose of this work is to collect in a single volume the range of materials systems with differing functionalities that show many of the common characteristics of geometrical frustration, where interacting degrees of freedom do not fit in a lattice or medium, and glassy behavior is accompanied by additional presence of disorder. The chapters are written by experts in their fields and span experiment and theory, as well as simulations. Frustrated Materials and Ferroic Glasses will be of interest to a wide range of readers in condensed matter physics and materials science.