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Book

Basic Notions of Condensed Matter Physics

Book

Basic Notions of Condensed Matter Physics

DOI link for Basic Notions of Condensed Matter Physics

Basic Notions of Condensed Matter Physics book

Basic Notions of Condensed Matter Physics

DOI link for Basic Notions of Condensed Matter Physics

Basic Notions of Condensed Matter Physics book

Edited ByPhilip W. Anderson
Edition 1st Edition
First Published 1984
eBook Published 23 May 2019
Pub. Location Boca Raton
Imprint CRC Press
DOI https://doi.org/10.4324/9780429494116
Pages 564
eBook ISBN 9780429494116
Subjects Physical Sciences
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Anderson, P.W. (Ed.). (1984). Basic Notions of Condensed Matter Physics (1st ed.). CRC Press. https://doi.org/10.4324/9780429494116

ABSTRACT

First Published in 2018. Routledge is an imprint of Taylor & Francis, an Informa company.

TABLE OF CONTENTS

part |7 pages

chapter 1|7 pages

Introduction

Edited ByPhilip W. Anderson

chapter 2|62 pages

Basic Principles I: Broken Symmetry

Edited ByPhilip W. Anderson

chapter 3|60 pages

Basic Principles Ii: Adiabatic Continuity and Renormalization

Edited ByPhilip W. Anderson

chapter 4|34 pages

Solids, Ouantum and Otherwise

Edited ByPhilip W. Anderson

chapter 5|63 pages

Uses of the Idea of the Renormalization Group in Many-Body Physics

Edited ByPhilip W. Anderson

chapter 6|20 pages

Coherent Matter Field Phenomena in Superfluids

ByP.W. Anderson

chapter 7|13 pages

Considerations on the Flow of Superfluid Helium*

ByP.W. Anderson

chapter 8|15 pages

Broken Symmetry, Emergent Properties, Dissipative Structures, Life: are they Related?

ByP.W. Anderson, D.L. Stein

chapter 9|102 pages

Theory of Anisotropic Superfluidity in He3

ByP.W. Anderson, W.F. Brinkman

chapter 10|3 pages

Principles of a Classification of Defects in Ordered Media

ByG. Toulouse, M. Kléman

chapter 11|10 pages

Investigation of singularities in superfluid He3 in liquid crystals by the homotopic topology methods

ByG.E. Volovik, V.P. Mineev

chapter 12|4 pages

Phase Slippage without Vortex Cores: Vortex Textures in Superfluid 3He

ByP.W. Anderson, G. Toulouse

chapter 13|5 pages

CXXXVI. On the Quantum Mechanics of Helium II.

ByO. Penrose

chapter 14|9 pages

Bose-Einstein Condensation and Liquid Helium

ByOliver Penrose, Lars Onsager

chapter 15|11 pages

Application of the Methods of Quantum Field Theory to a System of Bosons

ByS. T. Beliaev

chapter 16|9 pages

Energy-Spectrum of a Non-Ideal Bose Gas

ByS. T. Beliaev

chapter 17|12 pages

A “Fermi-Liquid” Description of the Kondo Problem at Low Temperatures

ByP. Nozières

chapter 18|7 pages

Conductivity from Charge or Spin Density Waves

ByP.A. Lee, T.M. Rice, P.W. Anderson*

chapter 19|11 pages

Electric field depinning of charge density waves

ByP.A. Lee, T.M. Rice

chapter 20|1 pages

Sliding charge density waves

ByP.A. Lee

chapter 21|11 pages

Exact Results in the Kondo Problem. II. Scaling Theory, Qualitatively Correct Solution and Some New Results on One-Dimensional Classical Statistical Models

ByP.W. Anderson, G. Yuval, D.R. Hamann

chapter 22|6 pages

A Poor Man’s Derivation of Scaling Laws for the Kondo Problem

ByP.W. Anderson

chapter 23|4 pages

Scaling Theory of the Asymmetric Anderson Model

ByF.D.M. Haldane

chapter 24|23 pages

Ordering, metastability and phase transitions in two-dimensional systems

ByJ.M. Kosterlitz, D.J. Thouless

chapter 25|3 pages

Scaling Theory of Localization: Absence of Quantum Diffusion in Two Dimensions

ByE. Abrahams, P.W. Anderson, D.C. Licciardello, T.V. Ramakrishnan

chapter 26|5 pages

Scaling Theory of the Metal-Insulator Transition in Amorphous Materials

ByW.L. McMillan

chapter 27|20 pages

Quantum critical phenomena *

ByJohn A. Hertz
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