Thermodynamics of Crystalline States
2nd ed. 2013.
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Author
Contributions
- SpringerLink (Online service) - Contributor
Publication
2013 - Springer New York, New York, NY, United States
Language
English
Word Count
68,750 words, Guess
Page Count
275 pages
Physical Format
[electronic resource] /
Identifiers
- Open LibraryOL27091873M
- ISBN-139781461450856
- OCLC Control Number842150903
- Library of Congress Control Number2012954672
Classifications
- DDC536.7
- LCCQC310.15-319
Description
Thermodynamics is a well-established discipline of physics for properties of matter in thermal equilibrium with the surroundings. Applying to crystals, however, the laws encounter undefined properties of crystal lattice, which therefore need to be determined for a clear and well-defined description of crystalline states. <i>Thermodynamics of Crystalline States</i> explores the roles played by order variables and dynamic lattices in crystals in a wholly new way.<br><br>The book begins by clarifying basic concepts for stable crystals. Next, binary phase transitions are discussed to study collective motion of order variables, as described mostly as classical phenomena. New to this edition is the examination of magnetic crystals, where magnetic symmetry is essential for magnetic phase transitions. The multi-electron system is also discussed theoretically, as a quantum-mechanical example, for superconductivity in metallic crystals. Throughout the book, the role played by the lattice is emphasized and studied in-depth.<br><br><i>Thermodynamics of Crystalline States</i> is an introductory treatise and textbook on mesoscopic phenomena in solid states, constituting a basic subject in condensed matter physics. While this book serves as a guide for advanced students in physics and material science, it can also be useful as a reference for all professionals in related fields. <br><br><b>Minoru Fujimoto </b>is author of <i>Physics of Classical Electromagnetism </i>(Springer, 2007) and <i>The Physics of Structural Phase Transitions </i>(Springer, 2005). <br>
Subjects
Other Editions
- Thermodynamics of Crystalline States
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