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Metallic Multilayers and their Applications: Theory, Experiments, and Applications related to Thin Metallic Multilayers: Handbook of Metal Physics, cartea 4

Autor Gayanath Fernando Prasanta Misra
en Limba Engleză Hardback – 16 mar 2008
Thin Metallic multilayer films have become an important part in today's computer technology. The giant magnetoresistance (GMR) effect, which plays a central role here, was discovered in the late 1980s. This can be essentially described as the effect of a magnetic field on the electron transport leading to significant changes in the resistance. Other aspects of multilayers systems, such as stability, growth, confinement are also addressed. Theoretical and experimental methods used in such work are described in some detail, with special emphasis on density functional and spin density functional theories. Magnetic anisotropy in thin films is also discussed while addressing unresolved issues and new results from exchange-bias experiments.

  • Discusses the GMR effect
  • What makes multilayers interesting and useful?
  • What are the latest discoveries in this field?
  • Simple insights in to the physics behind multilayers
  • Novel concepts at small length scales
  • Theoretical and experimental background
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Specificații

ISBN-13: 9780444517036
ISBN-10: 0444517030
Pagini: 266
Ilustrații: 1
Dimensiuni: 165 x 240 x 15 mm
Greutate: 0.5 kg
Editura: ELSEVIER SCIENCE
Seria Handbook of Metal Physics


Public țintă

Research institutions, Libraries, Graduate students, Faculty active in research (condensed matter physics)

Cuprins

Chapter 1. GMR in Metallic Multilayers - a Simple PictureChapter 2. Overview of First Principles Theory: Metallic FilmsChapter 3. Thin Epitaxial Films: Insights from Theory and ExperimentChapter 4. Magnetic Anisotropy in Transition Metal SystemsChapter 5. Probing Layered Systems: a Brief Guide to Experimental Techniques Chapter 6. Generalized Kohn-Sham Density Functional Theory via Effective Action Formalism Chapter 7. MAgnetic Tunnel Jusctions and Spin TorquesChapter 8. Confined Electronic States in Metallic MultilayersChapter 9. Half-Metallic Systems: Complete Asymmetry in Spin Transport Chapter 10. Exact Theoretical Studies of Small Hubbard Clusters