Buch, Englisch, 466 Seiten, Hardback, Format (B × H): 156 mm x 234 mm, Gewicht: 453 g
Reihe: River Publishers Series in Electronic Materials, Circuits and Devices
Buch, Englisch, 466 Seiten, Hardback, Format (B × H): 156 mm x 234 mm, Gewicht: 453 g
Reihe: River Publishers Series in Electronic Materials, Circuits and Devices
ISBN: 978-87-7022-411-6
Verlag: River Publishers
Advances in Highly Correlated Systems explores the fundamentals, recent advances, and applications of the physics of highly correlated materials. This book serves as a handbook/reference for advanced graduate students.
The book provides fascinating insights into the major developments and applications of strongly correlated materials. It then goes on to integrate various numerical/theoretical models, such as dynamic mean-field theory, Hubbard model, Ab-Initio Calculation etc. It also encompasses a useful experimental and theoretical basis for students, researchers, and scientists.
Zielgruppe
Academic, Postgraduate, and Professional Reference
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
1. Dynamical Mean Field Theory: Application to the Strongly Correlated Materials 2. Multiferroic Perspectives on Strain, Structure and Properties 3. Electronic and Spintronic Devices using Strongly Correlated Two-Dimensional Semiconducting Transition Materials 4. Highly Correlated Systems Associated with Magnetoelectricity in Multiferroics 5. Topological Aspects of Strongly Correlated Systems 6. Atomic Dynamics and Structural Phase Transitions in Perovskite and Multiferroic Compounds using Inelastic Neutron Scattering and Ab-Initio Calculation 7. Strongly Correlated Doped Graphene Systems-Synthesis, Electronic Properties and Applications 8. Coupling of Electrostatic Ion Cyclotron And Ion Acoustic Waves in a Five-Component Cometary Plasma 9. Materials for Strongly Correlated Systems 10. Synthesis of Selected Strongly Correlated Multiferroic Systems 11. An Introduction to Strongly Correlated Multiferroic Core-Shell Nanoparticles: Synthesis, Characterization and Applications 12. Quantum Magnetism and Frustration 13. Magneto-Electric Multiferroics: A Promising Highly Correlated System 14. Strongly Correlated System of Materials: Modeling Challenges and Exciting Phenomena 15. Density Functional Theory Calculations of the Electronic Structure and Sensing Applications of Strongly Correlated Materials 16. Strongly Correlated 2D Materials and Oxides