We have compiled the list of Best Reference Books on Magnetic Materials subject. These books are used by students of top universities, institutes and colleges. Here is the full list of best books on Magnetic Materials along with reviews.
Kindly note that we have put a lot of effort into researching the best books on Magnetic Materials subject and came out with a recommended list of best books. The table below contains the Name of these best books, their authors, publishers and an unbiased review of books on “Magnetic Materials” as well as links to the Amazon website to directly purchase these books. As an Amazon Associate, we earn from qualifying purchases, but this does not impact our reviews, comparisons, and listing of these top books; the table serves as a ready reckoner list of these best books.
List of Magnetic Materials Books with author’s names, publishers, and an unbiased review as well as links to the Amazon website to directly purchase these books.
- Magnetism and Magnetic Materials
- Magnetic Materials and Magnetic Resonance
- Advanced Magnetic Materials and their Applications
1. Magnetism and Magnetic Materials
|1. “Introduction to Magnetic Materials” by B D Cullity
Book Review: This book explains the basic concepts of magnetic quantities, devices and magnetic materials. The book also covers SQUID, gradient magnetometers, magnetic force microscope, kerr effect, amorphous alloys, magnets and other latest topics. The book also contains a dedicated chapter on information materials. The book also presents materials with practicality thereby making way for physical, quantitative understanding. This book is useful for professionals and graduate students.
|2. “Modern ferrite technology” by A Goldman
Book Review: This book presents the recent ferrite advances and their applications in electronic components. The book also demonstrates the relationship that exists between material properties, component specification and device requirements with the help of ferrites. The book also stresses on practicality of magnetic material mechanisms. The book also discusses physical and chemical parameters of materials, impurity levels, microstructures and boundary effects. The book additionally also discusses processing conditions that are needed for implementation.
|3. “Science of Engineering Materials” by C M Srinivastava and C Srinivasan
Book Review: This book presents the basic classical and quantum laws on which the properties and materials structure is based. The book covers the basic engineering materials, metals, alloys, semiconductors, polymers, dielectrics, magnetic materials, laser applications and many more. The book also explains the recent nanotechnology applications that have happened in biology, medicine, energy, electronic devices and many more.
|4. “Magnetism and Magnetic Materials” by J P Jakubovics
Book Review: This book covers all the advancements made in the field of magnetism and magnetic materials. The book also discusses the basics of magnetism. The book contains many problems along with solutions to felicitate learning. The book mainly concentrates on four aspects of magnetism and they are hard magnetic materials, soft magnetic materials, magnetic recording and magnetic material evaluation. Students studying physics, materials science, metallurgy and electrical engineering benefit a lot from this book.
|5. “Introduction to Magnetism and Magnetic Materials” by D Jiles
“Introduction to Magnetism and Magnetic Materials” Book Review: The book in discussion deals with properties of magnetism and these magnetic materials. It may be of interest to students and researchers carrying out studies in the field. Both soft and hard magnetic materials are covered in this book. A wide range of applications are highlighted. Readers can also find exercises with solutions at the end of each chapter. Other topics included are magneto-transport, small particles, nanomagnetism, magnetic semiconductors, spintronics and high-frequency magnetism.
| 6. “Magnetic Materials” by Nicola A Spaldin
“Magnetic Materials” Book Review: The book covers a wide variety of topics of magnetism. It is recommended to students as well as researchers. Basic magnetic phenomena is explained along with classifications of materials and changes to device paradigms. Apart from this, exchange bias coupling and magnetoelectric materials are also covered. Other chapters are devoted to magnetic insulators, magnetic recording, magnetic semiconductors and multiferroic materials. Example problems with worked solutions are also provided.
| 7. “Magnetism and Magnetic Materials” by J M D Coey
“Magnetism and Magnetic Materials” Book Review: The book focuses on various aspects of magnetism. It can be accessed by graduate students studying the subject of magnetism. Special importance is given to the mathematical concepts involved. Magnet structures and spin electronic devices are covered. A wide variety of magnetic materials are treated in the book. Readers can find numerous illustrations, tables and data sheets. Worked out problems are also presented.
|8. “Handbook of Magnetic Materials” by K H J Buschow|
|9. “Magnetic Materials” by Rainer Hilzinger and Werner Rodewald|
| 10. “Magnetism and Magnetic Materials: Selected, Peer Reviewed Papers from the Forth Moscow International Symposium” by N Pervo
“Magnetism and Magnetic Materials: Selected, Peer Reviewed Papers from the Forth Moscow International Symposium” Book Review: The book deals with topics pertaining to magnetism. It is recommended to students as well as researchers of the field. Recent advances in the field of low-dimensional magnetism are studied. Magnetic semiconductors, oxides and metamaterials are examined. Concepts of transport phenomena, spintronics, magnetophotonics and HF magnetic properties are discussed. Magnetocaloric effects, shape memory alloys and superconductivity are also elucidated. Various applications such as in the fields of medicine and geophysics are also described.
2. Magnetic Materials and Magnetic Resonance
|1. “Nuclear Magnetic Resonance Spectroscopy of Cement-Based Materials” by Pierre Colombet and Arnd-Rüdiger Grimmer
“Nuclear Magnetic Resonance Spectroscopy of Cement-Based Materials” Book Review: The book mainly deals with NMR spectroscopy which is commonly used for the study of the structure and dynamics of solid-state materials. The book gives an overview of the basic concepts underlying the NMR spectroscopy. It is divided into four sections. The first section discusses Clinkerization reactions and Anhydrous Phase Characterization. The second part focuses on the Nanostructure of C-S-H. The third part explains the Effect of Admixtures on Hydration and the final part presents the Porosity, Texture and Transport Properties.
|2. “Magnetic Resonance in Porous Media” by Paola Fantazzini and Villiam Bortolotti
“Magnetic Resonance in Porous Media” Book Review: The book focuses on the dissemination of the recent progresses of Magnetic Resonance techniques applied to Porous media and their structure, molecular dynamics, fluid transport and behaviors in traditional and new porous media. The book proposes new experimental and theoretical approaches to study the unique characteristics of new materials along with the classical properties of fluids in porous media, to model classical and anomalous diffusion, to design magnets and procedures for special applications. The problems in traditional applications and new ones are solved using new instruments, apparatus and pulse sequences. It presents the experiences between the general field of porous media and medicine.
|3. “Multinuclear Solid-State Nuclear Magnetic Resonance of Inorganic Materials (Pergamon Materials Series)” by Kenneth J D MacKenzie and M E Smith
“Multinuclear Solid-State Nuclear Magnetic Resonance of Inorganic Materials (Pergamon Materials Series)” Book Review: The book features the most important of the new developments in the field of magnetic resonance in porous media. The book also introduces the new developments in hardwares and softwares. It provides a specialised and up-to-date treatment of the important concepts of inorganic materials research to which NMR(nuclear magnetic resonance) has application. It highlights the techniques of solid state nuclear magnetic resonance(NMR) spectroscopy.
| 4. “Magnetic Resonance Detection of Explosives and Illicit Materials (NATO Science for Peace and Security Series B: Physics and Biophysics)” by Tomaž Apih and Bulat Rameev
“Magnetic Resonance Detection of Explosives and Illicit Materials (NATO Science for Peace and Security Series B: Physics and Biophysics)” Book Review: The book discusses the detection of concealed explosives by using Nuclear Quadrupole Resonance (NQR). The book presents the ways through which the NQR spectrum detects explosives like TNT or RDX. It also covers the disadvantages of using NQR like low sensitivity, radio frequency interference from the noisy environment and inability to detect liquid explosives. The book proposes ways to overcome NQR sensitivity problems through a better understanding of the factors that affect the quadrupolar parameters of specific explosives. The use of these quadrupolar parameters, the problem of differentiation of liquid explosives and benign liquids in closed containers and a prototype stage are some of the factors explained in detail.
| 5. “Magnetic Resonance in Porous Media: Proceedings of the 9th International Bologna Conference on Magnetic Resonance in Porous Media” by Martin Hürlimann and Yi-Qiao Song
“Magnetic Resonance in Porous Media: Proceedings of the 9th International Bologna Conference on Magnetic Resonance in Porous Media” Book Review: The book is based on the proceedings of the International Bologna Conference of Magnetic Resonance in Porous media which provides a basic understanding on Porous media. The book presents topics like innovative techniques to study structure, behavior of fluids, their interactions in every kind of natural and artificial materials which includes rocks, cements, biological tissues, food stuffs, wood, particle packs, sediments, pharmaceuticals, zeolites and bioconstructs. It also discusses new data acquisition and processing techniques.
| 6. “Nuclear Magnetic Resonance of Liquid Crystals (Partially Ordered Systems)” by Ronald Y Dong
“Nuclear Magnetic Resonance of Liquid Crystals (Partially Ordered Systems)” Book Review: The book is developed for researchers and students in physics, chemistry and materials science which provides sufficient information on nuclear magnetic resonance. The book begins with an introduction to liquid crystals phases and field effects along with the basic physics of nuclear magnetic resonance. The book covers topics like orientational ordering and molecular field theories for various liquid crystal molecules and NMR studies of uniaxial and biaxial phases. It also presents spin relaxation processes and rotational, translational and internal molecular dynamics of liquid crystals. Two-dimensional and multiple-quantum NMR spectroscopies and their application in elucidating liquid crystal properties are also explained.
| 7. “Biological Magnetic Resonance: Volume 7” by Lawrence Berliner and Jacques Reuben
“Biological Magnetic Resonance: Volume 7” Book Review: The book mainly deals with biological magnetic resonance. It begins with a brief survey of phase classification and field effects in liquid crystals. It further moves on to topics like density matrix formalism, nuclear spin Hamiltonian, spin dynamics under the influence of radiofrequency pulses, orientational ordering of rigid molecules and molecular field theories for uniaxial and biaxial phases. It also discusses molecular field theories of flexible nematogens, additive potential method, semiclassical relaxation theory of Redfield, spin relaxation process in liquid crystals and the unique mechanism of director fluctuations. Rotational and translational dynamics of flexible mesogens, modeling of spin-lattice relaxation rates in these molecules and two-dimensional and multiple-quantum NMR and their applications are other important topics which are presented.
| 8. “In-Vivo Magnetic Resonance Spectroscopy III: In-Vivo MR Spectroscopy: Potential and Limitations: 2 (NMR Basic Principles and Progress)” by Markus Rudin and N Beckmann
“In-Vivo Magnetic Resonance Spectroscopy III: In-Vivo MR Spectroscopy: Potential and Limitations: 2 (NMR Basic Principles and Progress)” Book Review: The book features magnetic resonance spectroscopy and its different characteristics. The book discusses six major topics such as Isolated cells and Perfused organs, NMR studies of Metabolism of cells and Perfused organs individual nuclei, In-Vivo proton spectroscopy and their experimental aspects and potential, In-Vivo 13C spectroscopy in humans, Fluorine-19F NMR spectroscopy and imaging In-Vivo, Measuring Cation movements across the cell wall using NMR spectroscopy which includes Sodium movements in striated muscles.
| 9. “25th Congress Ampere on Magnetic Resonance and Related Phenomena: Extended Abstracts” by Hans C Wolf and Michael Mehring
“25th Congress Ampere on Magnetic Resonance and Related Phenomena: Extended Abstracts” Book Review: The book is a collection of extended abstracts of 10 plenary lectures, 27 invited symposium lectures and approximately 300 contributed papers which were presented during the 25th Congress Ampère. The book discusses all the major concepts of magnetic resonance and radio spectroscopy and their applications in physics, chemical physics, medicine and biology. Advanced NMR and ESR techniques and their applications are also explained in the book.
| 10. “Principles of Magnetic Resonance (Springer Series in Solid-State Sciences)” by Charles P Slichter
“Principles of Magnetic Resonance (Springer Series in Solid-State Sciences” Book Review: The book is specifically designed for graduates and features the basic concepts concerning magnetic resonance. It gives a detailed description of the different aspects of nuclear magnetic resonance and electron spin resonance. It covers topics such as the basic principles of magnetic resonance, steady-state and pulse methods, the theory of the width, shape and position of spectral absorption lines along with the theory of relaxation times. It also provides an introduction to the density matrix.
3. Advanced Magnetic Materials and their Applications
|1. “Spin Electronics” by Michael Ziese and Martin J Thornton
“Spin Electronics” Book Review: This book is a one of its kind book on spin electronics. It depicts the important topics for new researchers. The book includes magnetism and semicolon basics. Micromagnetism, experimental techniques and materials science is described. Device fabrication and new developments in spin dependent processes are included. The concluding chapters mostly are a number of exercises and solved problems. They help in understanding this topic.
|2. “Ultrathin Magnetic Structures” by J A C Bland and B Heinrich
“Ultrathin Magnetic Structures” Book Review: This book depicts the properties of thin film magnets and methods of their characterization. This book deals with the fundamentals of spintronics. This includes magnetoelectronic materials, spin injection and detection. Micromagnetics is included. Development of magnetic random access memory based on GMR and tunnel junction devices is also included. The books give a detailed account of this continuously changing and growing field. This book is for both beginners and experts of the field.
|3. “Supermagnets, Hard Magnetic Materials” by G J Long and F Grandjean
“Supermagnets, Hard Magnetic Materials” Book Review: This book is a result of the interest of the editors of Advanced study institute of hard magnetic materials. Various moments at iron sites in Nd Fe B. The editors brought scientists and engineers together in this book. Various properties of the hard magnetic materials were discussed.
| 4. “Handbook of Advanced Magnetic Materials” by Yi Liu and D J Sellmyer
“Handbook of Advanced Magnetic Materials” Book Review: This is a four volume set of reference books. It provides a detailed review of recent progress in magnetic materials research. Every chapter of the book starts with a basic introduction. This leads on to the detailed discussions. Possible future advancements are also discussed. First volume – ‘Nanostructured Advanced Magnetic Materials’, includes recent developments about topics. Special importance is given to side effects. Second volume – ‘Characterization and Simulation’, includes detailed review of experimental methods. Simulation techniques for characterization of magnetic materials are also included. Third volume – Processing of Advanced Magnetic Materials, provides recent developments of the field. Fourth volume – Properties and Applications of Advanced Magnetic Materials, it has reviews of the current progress of the field.
| 5. “Electronic, Magnetic, and Optical Materials” by Pradeep Fulay and Jung-Kun Lee
“Electronic, Magnetic, and Optical Materials” Book Review: This book is an amalgamation of materials science with different other engineering subjects. These are physics, chemistry and electrical engineering. The book has discussions on devices and technologies. These are used by electronic, magnetics and photonics industries. It helps to see manufacturing technologies used in device fabrication in a new light. New topics are included. These are optical properties and devices. Addresses to nanoscale phenomena and nanoscience are also included.
| 6. “Handbook of Magnetism and Advanced Magnetic Materials” by Helmut Kronmüller and Stuart Parkin
“Handbook of Magnetism and Advanced Magnetic Materials” Book Review: This book has been written, edited and acknowledged by the leaders of the field. A detailed and state-of-the-art comprehensive review is provided. This is of current understanding in the field. It includes fundamental properties of magnetically ordered materials and their applications. This handbook is available in five volumes. Volume 1-Fundamentals and Theory. Volume 2-Micromagnetism. Volume 3-Novel Techniques for Characterizing and Preparing Samples. Volume 4-Novel Materials. Volume 5-Sprintronics and Magnetoelectronics.
|7. “Handbook of Advanced Magnetic Materials” by Casan Anderson|
| 8. “Advanced Magnetic and Optical Materials (Advanced Material Series)” by Ashutosh Tiwari and Parameswar K Iyer
“Advanced Magnetic and Optical Materials (Advanced Material Series)” Book Review: This book contains the latest topics with updated information on them. The topics included are functional optical and magnetic materials, engineering of quantum structures, high-tech magnets. Characterization and new applications of these are also included. The book has new methods and strategies of research. The contributors of the book are experts in the field. The book has 14 chapters organized in two parts. Part 1 is about Magnetic Materials and Part 2 is about Optical Materials.
| 9. “Advanced Magnetic Nanostructures” by D J Sellmyer and Ralph Skomski
“Advanced Magnetic Nanostructures” Book Review: This book plays special attention to state of the art synthetic methods for creating new magnetic nanostructures. The aim of the book is to give a detailed account of current progress of the field. Leading researchers from around the world have contributed to this book. Main focus of the book is deliberately structured nanomagnets. Cluster assembled, self-organized and patterned thin films are included. Multilayered thin films are excluded. The book is for industry and academic researchers.
| 10. “Electronic, Magnetic, and Optical Materials (Advanced Materials and Technologies)” by Pradeep Fulay and Jung-Kun Lee
“Electronic, Magnetic, and Optical Materials (Advanced Materials and Technologies)” Book Review: This book is a merger of science and engineering. It has a balance between fundamental and technological aspects. It includes important applications for a variety of fields. Some of these are – Nanoscience, Electromagnetics, Semiconductors etc. A number of real world technological examples are given in the book. This book is useful for undergraduate students to anyone working in this industry.
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