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The metal-to-insulator transition in Li and Al doped Lithium Titanate
Details
This monograph provides supporting evidence for the importance of electronic correlations in Lithium Titanate. In chapter one Transition Metal Oxides and their interesting electric and magnetic properties are introduced. Specially, Lithium Titanate, a superconductor, and Lithium Vanadate, the only known d-electron Heavy Fermion, are introduced. In chapter two a single electron model is introduced for the conducting electrons in Lithium Titanate. The model applies a tight-binding approximation for d-electrons of Ti atoms for the alloyed compound of Lithium Titanate which is a Quantum Site Percolation (QSP) model. In chapters three and four this model is applied to a corner-sharing tetrahedral lattice to examine an alloying-induced metal-to-insulator transition. The numerical results show that this model fails to explain this transition. Finally, in chapter five the electronic interactions have been included using a combination of QSP model and Hubbard model on a corner-sharing tetrahedral lattice. Numerical results based on this model explain relatively accurately this transition which shows the important role of electronic correlations in this class of materials.
Autorentext
Dr. Farhad Fazileh has obtained his PhD degree in 2005 from Queen's University, Canada. Then he worked as a postdoctoral fellow at University of Windsor, Canada. Since 2008 he has joined Isfahan University of Technology, Iran as an Assistant Professor of Physics. He is the author of several articles published in reputed journals.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783847375463
- Auflage Aufl.
- Sprache Englisch
- Genre Physik & Astronomie
- Größe H220mm x B150mm x T9mm
- Jahr 2012
- EAN 9783847375463
- Format Kartonierter Einband (Kt)
- ISBN 978-3-8473-7546-3
- Titel The metal-to-insulator transition in Li and Al doped Lithium Titanate
- Autor Farhad Fazileh
- Untertitel An examination of the role of electronic correlations in Lithium Titanate
- Gewicht 243g
- Herausgeber LAP Lambert Academic Publishing
- Anzahl Seiten 152