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Quick and Dirty Preview of Solid State Physics

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Quick and Dirty Preview of Solid State Physics

Quick and Dirty Preview of Solid State Physics

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Elementary Solid State Physics UOU

Elementary Solid State Physics UOU

The topics in this pdf include: Crystal structure, Band theory of Solids, Specific Heat Dielectric and Magnetic properties of Materials.

s219 Pages
Solid State Theory Manfred Sigrist

Solid State Theory Manfred Sigrist

Solid state physics is one of the most active and versatile branches of modern physics that have developed in the wake of the discovery of quantum mechanics. It deals with problems concerning the properties of materials and, more generally, systems with many degrees of freedom, ranging from fundamental questions to technological applications. The topics explained in this pdf include:Introduction, Electrons in the periodic crystal - band structure, Metals, Itinerant electrons in a magnetic field, Landau’s Theory of Fermi Liquids, Transport properties of metals, Magnetism in metals, Magnetism of localized moments.

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Solid State Physics by Mike Godfrey

Solid State Physics by Mike Godfrey

This note explains the following topics: Crystal structure, X-ray crystallography, Electrons in crystals, Electrons in a periodic potential, Semiclassical dynamics of Bloch electrons, Free-electron bands and crystal structure, Cyclotron resonance, Magnetism, Electrons in a magnetic field, Magnetism of a gas of free electrons, Ordered magnetic states, Ferromagnetic groundstate and excitations .

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Introduction to Solid State Physics by National Taiwan Normal University

Introduction to Solid State Physics by National Taiwan Normal University

This note explains the following topics: Crystal structure, Wave diffraction and the reciprocal lattice, Crystal binding and elastic constants, Phonons, Free-electron Fermi gas, Energy bands, Fermi surface and metals, Semiconductor crystals, Superconductivity, Diamagnetism and paramagnetism, Ferromagnetism and antiferromagnetism, Magnetic resonance, Plasmons, polaritons and polarons, Optical processes and excitons, Dielectrics and ferroelectrics.

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Introduction to Solid State Physics by University of Nebrask

Introduction to Solid State Physics by University of Nebrask

This note explains the following topics: Crystal Structure, X-Ray Diffraction and Reciprocal Lattice, Crystal Binding, Elastic Properties , Lattice Vibrations, Thermal Properties, Free-Electron Model,Electron Transport, Energy Bands, Electron Dynamics and Fermi Surfaces, Methods for Calculating Band Structure, Semiconductors, Optical Properties of Solids, Dielectric Properties of Insulators, Magnetic Properties.

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Solid State Physics Introduction Lecture notes

Solid State Physics Introduction Lecture notes

This note covers the following topics:  The electronic structure: tight-binding method and nearly free-electron model, Comparison of results for tight-binding and nearly-free electron model, Formalization: Bloch theorem, Phonons in one dimension, Periodicity, Effect of a basis on the electronic structure, Crystal structures, The reciprocal lattice, Tight-binding in two dimensions, Optical spectroscopy, Quantum-mechanical treatment of optical spectroscopy, Relation to absorption, Thomas-Fermi screening, Ferromagnetism, Antiferromagnetism, Electron-phonon interaction, Transition temperature, Ginzburg-Landau theory, Flux quantization and the Josephson effect.

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Introduction to solid state theory by Prof. Thomas Pruschke

Introduction to solid state theory by Prof. Thomas Pruschke

This note explains the following topics: The solid as quantum system, The homogeneous electron gas, Lattices and crystals, Electrons in a periodic potential, Lattice dynamics, Electron Dynamics, Magnetism, Superconductivity, Theory of scattering from crystals.

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Advanced Solid State Physics Lectures

Advanced Solid State Physics Lectures

This note describes the following topics: Quantization, Photons, Free electrons, empty lattice approximation, Metals, Fermi surfaces, Metals, Fermi surfaces, plane wave method, tight binding, Graphene, carbon nanotubes, photoemission, Semiconductors, Free electrons in a magnetic field , Landau levels, Quantum Hall Effect, Landau levels, Linear response theory , Optical properties of insulators, Optical properties of metals, Boltzmann equation, Thermoelectric effects, Crystal physics, Structural phase transitions / electron screening, Single-electron effects, Hubbard model, Peierls transition , Landau's theory of a Fermi liquid, phonons, Ferroelectrics, piezoelectrics, Landau theory of phase transition, Superconductivitys.

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Solid State Physics Optical Properties of Solids

Solid State Physics Optical Properties of Solids

This book covers the following topics: Fundamental Relations for Optical Phenomena, Drude Theory–Free Carrier Contribution to the Optical Properties, Interband Transitions, The Joint Density of States and Critical Points, Absorption of Light in Solids, Optical Properties of Solids Over a Wide Frequency Range, Impurities and Excitons, Luminescence and Photoconductivity, Optical Study of Lattice Vibrations, Amorphous Semiconductors.

s198 Pages
Lecture notes for Solid State Physics [PDF 40p]

Lecture notes for Solid State Physics [PDF 40p]

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Introduction to Solid state Physics

Introduction to Solid state Physics

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Solid State Physics   Lecture Handouts

Solid State Physics Lecture Handouts

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Solid   State Physics Optical Properties

Solid State Physics Optical Properties

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Advanced Solid State Physics

Advanced Solid State Physics

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Physics for Solid State Applications

Physics for Solid State Applications

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Lecture Notes on Solid State Physics

Lecture Notes on Solid State Physics

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