Magnetism in condensed matter /

An understanding of the quantum mechanical nature of magnetism has led to the development of new magnetic materials which are used as permanent magnets, sensors, and information storage. Behind these practical applications lie a range of fundamental ideas, including symmetry breaking, order paramete...

Πλήρης περιγραφή

Λεπτομέρειες βιβλιογραφικής εγγραφής
Κύριος συγγραφέας: Blundell, Stephen
Μορφή: Ηλ. βιβλίο
Γλώσσα:English
Έκδοση: Oxford ; New York : Oxford University Press, 2001.
Σειρά:Oxford master series in condensed matter physics.
Θέματα:
Διαθέσιμο Online:http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=98436
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245 1 0 |a Magnetism in condensed matter /  |c Stephen Blundell. 
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504 |a Includes bibliographical references and index. 
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520 |a An understanding of the quantum mechanical nature of magnetism has led to the development of new magnetic materials which are used as permanent magnets, sensors, and information storage. Behind these practical applications lie a range of fundamental ideas, including symmetry breaking, order parameters, excitations, frustration, and reduced dimensionality. This superb new textbook presents a logical account of these ideas, staring from basic concepts in electromagnetsim and quantum mechanics. It outlines the origin of magnetic moments in atoms and how these moments can be affected by their local environment inside a crystal. The different types of interactions which can be present between magnetic moments are described. The final chapters of the book are devoted to the magnetic properties of metals, and to the complex behaviour which can occur when competing magnetic interactions are present and/or the system has a reduced dimensionality. Throughout the text, the theoretical principles are applied to real systems. There is substantial discussion of experimental techniques and current research topics.; The book is copiously illustrated and contains detailed appendices which cover the fundamental principles. 
505 0 0 |a Machine generated contents note:  |g 1.  |t Introduction --  |g 1.1.  |t Magnetic moments --  |g 1.2.  |t Classical mechanics and magnetic moments --  |g 1.3.  |t Quantum mechanics of spin --  |g 2.  |t Isolated magnetic moments --  |g 2.1.  |t atom in a magnetic field --  |g 2.2.  |t Magnetic susceptibility --  |g 2.3.  |t Diamagnetism --  |g 2.4.  |t Paramagnetism --  |g 2.5.  |t ground state of an ion and Hund's rules --  |g 2.6.  |t Adiabatic demagnetization --  |g 2.7.  |t Nuclear spins --  |g 2.8.  |t Hyperfine structure --  |g 3.  |t Environments --  |g 3.1.  |t Crystal fields --  |g 3.2.  |t Magnetic resonance techniques --  |g 4.  |t Interactions --  |g 4.1.  |t Magnetic dipolar interaction --  |g 4.2.  |t Exchange interaction --  |g 5.  |t Order and magnetic structures --  |g 5.1.  |t Ferromagnetism --  |g 5.2.  |t Antiferromagnetism --  |g 5.3.  |t Ferrimagnetism --  |g 5.4.  |t Helical order --  |g 5.5.  |t Spin glasses --  |g 5.6.  |t Nuclear ordering --  |g 5.7.  |t Measurement of magnetic order --  |g 6.  |t Order and broken symmetry --  |g 6.1. 
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