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Electronic Structure and Physical Properties of Solids : The Uses of the LMTO Method. 1st ed. 2000

種類:
電子ブック
責任表示:
edited by Hugues Dreysse
出版情報:
Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2000
著者名:
シリーズ名:
Lecture Notes in Physics ; 535
ISBN:
9783540464372 [3540464379]  CiNii Books  Calil
注記:
Ground and Excited-State Formalisms -- Developing the MTO Formalism -- From ASA Towards the Full Potential -- A Full-Potential LMTO Method Based on Smooth Hankel Functions -- Full-Potential LMTO Total Energy and Force Calculations -- Excited States Calculated by Means of the Linear Mu.n-Tin Orbital Method -- Magnetic Properties -- Fully Relativistic Band Structure Calculations for Magnetic Solids - Formalism and Application -- First Principles Theory of Magneto—Crystalline Anisotropy -- On the Implementation of the Self-Interaction Corrected Local Spin Density Approximation for d- and f-Electron Systems -- Ab Initio Theory of the Interlayer Exchange Coupling -- Disordered Alloys -- Disordered Alloys and Their Surfaces: The Coherent Potential Approximation -- Locally Self-Consistent Green’s Function Method and Its Application in the Theory of Random Alloys -- Large-Scale Real-Space Calculations -- Sparse Direct Methods: An Introduction -- Real-Space Tight-Binding LMTO Approach to Magnetic Anisotropy: Applicati
This book displays the latest developments in the determinatioin of the electronic structure of solids and the physical properties which can be described from the electronic structure. Special emphasis is placed on the Linear Muffin Tin Orbital method for ground state and excited state calculation. The state-of-the-art of the formalisms is presented, from the venerable Atomic Sphere Approximation to the Full Potential schemes. The efficiency of this method is shown in various situations: magnetic properties, interlayer exchange coupling, metallic alloys, d- and f-electron systems. The latter part of the book is devoted to large-scale real-space calculations, including an introduction to sparse direct methods. With the aim of maximizing tutorial value, experts in each domain present over ten years of work, which has been published only in specialised papers before and now becomes available for researchers as well as students and teachers in solid state physics or materials science.
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