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Magnetics, Dielectrics, and Wave Propagation with MATLAB (R) Codes
Magnetics, Dielectrics, and Wave Propagation with MATLAB (R) Codes
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Chapter IV introduces the production of ferrites at the atomic scale, which is important for future electronic devices. Chapter VI demonstrates how to produce magnetoelectric ferrite materials at the atomic scale to enhance the magnetoelectric coupling. Chapter IV also addresses the "What if" question of placing a particular magnetic ion in a specific site of a unit crystal lattice, which the natural growth process doesn't allow. This process was utilized to enhance the magnetoelectric coupling in hexaferrites.
Format: Hardback
Length: 474 pages
Publication date: 15 November 2023
Publisher: Taylor & Francis Ltd
Here is the rephrased text:
Chapter IV is a groundbreaking achievement, as it heralds the production of ferrites at the atomic scale for the very first time. This significance lies in the fact that future electronic devices are poised for remarkable miniaturization, making Chapter IV paramount in shaping the technological landscape. Chapter VI takes the lessons learned from Chapter IV and applies them to the creation of magnetoelectric ferrite materials at the atomic scale. This innovative approach enhances the magnetoelectric coupling, paving the way for the development of a new generation of ferrite materials.
New applications in modern technologies demand fresh perspectives that enable practitioners to effectively harness the power of new and advanced materials. Chapter IV addresses the intriguing "What if" question by placing a specific magnetic ion in a particular site of a unit crystal lattice, which the natural growth process does not allow. This process, introduced in this book, was instrumental in enhancing the magnetoelectric coupling in hexaferrites while opening up a threshold for the next generation of ferrite materials.
In addition to these chapters, two appendices have been included. The first appendix, located in Chapter III, provides a simple model that elucidates the mechanism of relaxation. On the other hand, the second appendix, found in Chapter VII, introduces a microscopic calculation of magnetic relaxation, a unique application of the general formulation of the free energy of a magneto-dielectric media. By reducing complex calculational approaches to their simplest form of applicability, this book aims to make the subject more accessible and understandable to a broader audience.
Furthermore, two chapters (chapters IV and VI) and two appendices (one in Chapter III and the other in Chapter VII) have been added to enhance the content and depth of the book. A section titled "A Microscopic Model for the Landau-Lifshitz Damping Mechanism" has been included in Chapter VII to provide a deeper understanding of the underlying physics. Finally, abstracts have been added to each chapter to summarize the key points discussed.
In conclusion, this revised edition of the book offers a comprehensive and updated treatment of magnetic relaxation. With its expanded content, appendices, and improved accessibility, it aims to serve as a valuable resource for researchers, students, and practitioners in the field of materials science and engineering.
Weight: 834g
Dimension: 163 x 240 x 32 (mm)
ISBN-13: 9781032555683
Edition number: 2 ed
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