Magnetic phase transitions in single crystals/ David P. Belanger.
Material type:
TextPublication details: Singapore : World Scientific, 2022.Description: 1 online resource (248 p.)ISBN: - 9789811259494
- 9811259496
- 548/.85 23
- QD940 .B45 2022
| Cover image | Item type | Current library | Home library | Collection | Shelving location | Call number | Materials specified | Vol info | URL | Copy number | Status | Notes | Date due | Barcode | Item holds | Item hold queue priority | Course reserves | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Electronic Books | CUTN Central Library | 548/.85 (Browse shelf(Opens below)) | Link to resource | Available | EB04975 |
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Includes bibliographical references and index.
An introduction to phase transitions and universality -- Universal critical behavior from theory and simulations -- Background on experimental techniques -- Critical behavior experiments on anisotropic and isotropic antiferomagnets -- Domains, excitations, and spin-glass-like behaviors -- Experiments on pure magnets with frustration -- The unusual magnetism of LaCoO3; a thermally excited exchange interaction and ordering at twin interfaces -- Conclusions and outstanding questions.
"Magnetic crystals are ideal systems to study the universal properties of phase transitions, particularly systems with quenched randomness and frustration. Pure systems with different symmetries provide the foundation for studies in corresponding systems with quenched randomness. Because phenomena near phase transitions have universal properties, results from bulk magnetic crystals provide a basis for understanding phase transitions in films and nanoparticles, as well as many non-magnetic materials. This motivates the subject of this book, which discusses and studies phase transitions in magnetic crystals from the perspective of an experimentalist who has done extensive work in the field. The advantage is that many experimental techniques are described in sufficient detail for a good understanding of the results and their comparison to theory"-- Provided by publisher.
Mode of access: World Wide Web.
System requirements: Adobe Acrobat reader.
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