Buschow | Handbook of Magnetic Materials | E-Book | sack.de
E-Book

E-Book, Englisch, Band Volume 19, 410 Seiten

Reihe: Handbook of Magnetic Materials

Buschow Handbook of Magnetic Materials

E-Book, Englisch, Band Volume 19, 410 Seiten

Reihe: Handbook of Magnetic Materials

ISBN: 978-0-444-53781-2
Verlag: Elsevier Science & Techn.
Format: EPUB
Kopierschutz: 6 - ePub Watermark



Volume 19 of the Handbook of Magnetic Materials, as the preceding volumes, has a dual purpose. As a textbook it is intended to help those who wish to be introduced to a given topic in the field of magnetism without the need to read the vast amount of literature published. As a work of reference it is intended for scientists active in magnetism research. To this dual purpose, Volume 19 is composed of topical review articles written by leading authorities. In each of these articles an extensive description is given in graphical as well as in tabular form, much emphasis being placed on the discussion of the experimental material in the framework of physics, chemistry and material science. It provides readers with novel trends and achievements in magnetism. - Composed of topical review articles written by leading authorities - Intended to be of assistance to those who wish to be introduced to a given topic in the field of magnetism - As a work of reference it is intended for scientists active in magnetism research - Provide the readership with novel trends and achievements in magnetism
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Weitere Infos & Material


1;Front Cover;1
2;Handbook of Magnetic Matrials;4
3;Copyright;5
4;Preface to Volume 19;6
5;Contents;10
6;Contents of Volumes 1-18;12
7;Contributors;16
8;Chapter 1: Magnetic Recording Heads;20
8.1;1. Part I: Overview of Magnetic Recording System;20
8.2;2. Part II: Magnetic Write Heads;33
8.3;3. Part III: Magnetic Read Sensors;72
8.4;References;117
9;Chapter 2: Spintronic Devices for Memory and Logic Applications;126
9.1;1. Introduction;126
9.2;2. MTJs: A Route for CMOS/Magnetism Integration;127
9.3;3. Spin-Transfer Phenomenon;129
9.4;4. Magnetic Random Access Memories;133
9.5;5. Towards a Non-volatile Reprogrammable Logic;140
9.6;6 Conclusion;144
9.7;Acknowledgments;144
9.8;References;144
10;Chapter 3: Magnetoelectricity;148
10.1;1. Historical Introduction: Magnetoelectricity and Multiferroicity;149
10.2;2. Fundamentals;153
10.3;3. Measurement of Magnetoelectric Properties;178
10.4;4. Single-Phase Magnetoelectric Multiferroics;190
10.5;5. Magnetoelectric Composites;228
10.6;6. Applications;238
10.7;Acknowledgments;242
10.8;References;243
11;Chapter 4: Magnetic-Field-Induced Effects in Martensitic Heusler-Based Magnetic Shape Memory Alloys;250
11.1;1. Introduction;251
11.2;2. Twin-Boundary Motion;254
11.3;3. Structural and Magnetic Properties of Martensitic Heuslers;261
11.4;4. Lattice Dynamics of Ni-Mn-Based Heusler Alloys;276
11.5;5. Field-Driven Effects;285
11.6;6. Concluding Remarks;301
11.7;Acknowledgments;302
11.8;References;302
12;Chapter 5: Structure and Magnetic Properties of L10-Ordered Fe-Pt Alloys and Nanoparticles;310
12.1;1. Introduction;311
12.2;2. Phase Diagram and Structure of Fe-Pt Alloys;312
12.3;3. Magnetic Properties of Fe-Pt Alloys;316
12.4;4. Structure and Magnetic Properties of Bulk Fe-Pt Alloys;328
12.5;5. Nanocrystalline Fe-Pt Materials;334
12.6;6. FePt Nanomagnets;366
12.7;7. Application of Fe-Pt Alloys;386
12.8;8. Summary;413
12.9;References;414
13;Author Index;428
14;Subject Index;448
15;Materials Index;454


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