Disorder and Strain Induced Complexity in Functional Materials

This book PDF is perfect for those who love Technology & Engineering genre, written by Tomoyuki Kakeshita and published by Springer which was released on 28 September 2011 with total hardcover pages 308. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Disorder and Strain Induced Complexity in Functional Materials books below.

Disorder and Strain Induced Complexity in Functional Materials
Author : Tomoyuki Kakeshita
File Size : 40,9 Mb
Publisher : Springer
Language : English
Release Date : 28 September 2011
ISBN : 3642209440
Pages : 308 pages
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Disorder and Strain Induced Complexity in Functional Materials by Tomoyuki Kakeshita Book PDF Summary

This book brings together an emerging consensus on our understanding of the complex functional materials including ferroics, perovskites, multiferroics, CMR and high-temperature superconductors. The common theme is the existence of many competing ground states and frustration as a collusion of spin, charge, orbital and lattice degrees of freedom in the presence of disorder and (both dipolar and elastic) long-range forces. An important consequence of the complex unit cell and the competing interactions is that the emergent materials properties are very sensitive to external fields thus rendering these materials with highly desirable, technologically important applications enabled by cross-response.

Disorder and Strain Induced Complexity in Functional Materials

This book brings together an emerging consensus on our understanding of the complex functional materials including ferroics, perovskites, multiferroics, CMR and high-temperature superconductors. The common theme is the existence of many competing ground states and frustration as a collusion of spin, charge, orbital and lattice degrees of freedom in the

Get Book
Disorder and Strain Induced Complexity in Functional Materials

This book brings together an emerging consensus on our understanding of the complex functional materials including ferroics, perovskites, multiferroics, CMR and high-temperature superconductors. The common theme is the existence of many competing ground states and frustration as a collusion of spin, charge, orbital and lattice degrees of freedom in the

Get Book
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A highly coveted objective of modern materials science is to optimize multiple coupled functionalities in the same single phase material and control the cross-response via multiple external fields. One important example of such multi-functionality are multiferroic materials where two or more ferroic properties are intrinsically coupled. They include, among others,

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