Correlation Functions and Quasiparticle Interactions in Condensed Matter [electronic resource] /

This volume contains the proceedings of a NATO Advanced Study Institute devoted to the study of dynamical correlation functions of the form (I) J~e-lwt<A(O)B(O)A(t)B(t»dt where A and B are physical operations in the Heisenberg representa­ tion and -~ Tr(e ••• ) < ... > 6ft T- is an equilibrium average. In equation (1) it is useful to regard the product AB as the product of two operators in cases in which A and B refer to different spatial points in a condensed matter sys­ tem and/or in which A and B behave dynamically in a quasiharmonic way. In the second case, one has a two quasiparticle correlation function and CAB;AB(w) gives information about quasiparticle inter­ actions. Condensed matter physics has increasingly turned its attention to correlation functions of this type during the last 15 years, partly because the two point and/or one-particle correlation functions have by now been very thoroughly studied in many cases. The study of four point and/or two quasiparticle correlations has proceeded somewhat independently in several diverse fields of condensed matter physics and it was one purpose of the institute to bring experts from these different fields together to describe the current state of their art to each other and to advanced students.

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Bibliographic Details
Main Authors: Halley, J. Woods. editor., SpringerLink (Online service)
Format: Texto biblioteca
Language:eng
Published: Boston, MA : Springer US, 1978
Subjects:Physics., Condensed matter., Condensed Matter Physics.,
Online Access:http://dx.doi.org/10.1007/978-1-4684-3360-9
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id KOHA-OAI-TEST:186030
record_format koha
institution COLPOS
collection Koha
country México
countrycode MX
component Bibliográfico
access En linea
En linea
databasecode cat-colpos
tag biblioteca
region America del Norte
libraryname Departamento de documentación y biblioteca de COLPOS
language eng
topic Physics.
Condensed matter.
Physics.
Condensed Matter Physics.
Physics.
Condensed matter.
Physics.
Condensed Matter Physics.
spellingShingle Physics.
Condensed matter.
Physics.
Condensed Matter Physics.
Physics.
Condensed matter.
Physics.
Condensed Matter Physics.
Halley, J. Woods. editor.
SpringerLink (Online service)
Correlation Functions and Quasiparticle Interactions in Condensed Matter [electronic resource] /
description This volume contains the proceedings of a NATO Advanced Study Institute devoted to the study of dynamical correlation functions of the form (I) J~e-lwt<A(O)B(O)A(t)B(t»dt where A and B are physical operations in the Heisenberg representa­ tion and -~ Tr(e ••• ) < ... > 6ft T- is an equilibrium average. In equation (1) it is useful to regard the product AB as the product of two operators in cases in which A and B refer to different spatial points in a condensed matter sys­ tem and/or in which A and B behave dynamically in a quasiharmonic way. In the second case, one has a two quasiparticle correlation function and CAB;AB(w) gives information about quasiparticle inter­ actions. Condensed matter physics has increasingly turned its attention to correlation functions of this type during the last 15 years, partly because the two point and/or one-particle correlation functions have by now been very thoroughly studied in many cases. The study of four point and/or two quasiparticle correlations has proceeded somewhat independently in several diverse fields of condensed matter physics and it was one purpose of the institute to bring experts from these different fields together to describe the current state of their art to each other and to advanced students.
format Texto
topic_facet Physics.
Condensed matter.
Physics.
Condensed Matter Physics.
author Halley, J. Woods. editor.
SpringerLink (Online service)
author_facet Halley, J. Woods. editor.
SpringerLink (Online service)
author_sort Halley, J. Woods. editor.
title Correlation Functions and Quasiparticle Interactions in Condensed Matter [electronic resource] /
title_short Correlation Functions and Quasiparticle Interactions in Condensed Matter [electronic resource] /
title_full Correlation Functions and Quasiparticle Interactions in Condensed Matter [electronic resource] /
title_fullStr Correlation Functions and Quasiparticle Interactions in Condensed Matter [electronic resource] /
title_full_unstemmed Correlation Functions and Quasiparticle Interactions in Condensed Matter [electronic resource] /
title_sort correlation functions and quasiparticle interactions in condensed matter [electronic resource] /
publisher Boston, MA : Springer US,
publishDate 1978
url http://dx.doi.org/10.1007/978-1-4684-3360-9
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spelling KOHA-OAI-TEST:1860302018-07-30T23:08:32ZCorrelation Functions and Quasiparticle Interactions in Condensed Matter [electronic resource] / Halley, J. Woods. editor. SpringerLink (Online service) textBoston, MA : Springer US,1978.engThis volume contains the proceedings of a NATO Advanced Study Institute devoted to the study of dynamical correlation functions of the form (I) J~e-lwt<A(O)B(O)A(t)B(t»dt where A and B are physical operations in the Heisenberg representa­ tion and -~ Tr(e ••• ) < ... > 6ft T- is an equilibrium average. In equation (1) it is useful to regard the product AB as the product of two operators in cases in which A and B refer to different spatial points in a condensed matter sys­ tem and/or in which A and B behave dynamically in a quasiharmonic way. In the second case, one has a two quasiparticle correlation function and CAB;AB(w) gives information about quasiparticle inter­ actions. Condensed matter physics has increasingly turned its attention to correlation functions of this type during the last 15 years, partly because the two point and/or one-particle correlation functions have by now been very thoroughly studied in many cases. The study of four point and/or two quasiparticle correlations has proceeded somewhat independently in several diverse fields of condensed matter physics and it was one purpose of the institute to bring experts from these different fields together to describe the current state of their art to each other and to advanced students.I. General Theory -- Kubo and Zubarev Formulations of Response Theory -- Perturbation Theory of Response Functions -- Renormalization Group Approach to Dynamic Critical Phenomena -- Nonlinear Response Theory -- II. Magnetic Systems -- Magnetic Excitations -- A Green Function Approach to Two-Magnon Light Scattering in Antiferromagnets at T < TN -- Two-Spin Light Scattering in Heisenberg Antiferromagnets -- Two-Magnon Spectra of Ferromagnets -- Light Scattering Determinations of Dynamic Four Point Correlation Functions -- III. Liquids -- Second-Order Light Scattering by Classical Fluids I: Collision Induced Scattering -- Second-Order Light Scattering by Classical Fluids II: Double Light Scattering by Critical Fluids -- Numerical Calculations in Classical Liquids -- Optical Polarization in Molecular Dielectric Liquids -- Rotational Relaxation of Solute Molecules in Dense Noble Gases -- Spinodal Decomposition: An Outline -- Mode Coupling Calculations of Critical Phenomena and Polymer Dynamics -- Two Roton Raman Scattering in Superfluid He4 -- Roton Bound States in Liquid 4He -- Integrated Raman Intensity in 4He -- Response Function of the Superconducting Order Parameter -- IV. Phonons -- Second Order Phonon Spectra -- Neutron Scattering and Interactions Between Excitations -- Optical Response of Quantum Crystals -- Anharmonic Interference in Scattering Experiments -- List of Contributors.This volume contains the proceedings of a NATO Advanced Study Institute devoted to the study of dynamical correlation functions of the form (I) J~e-lwt<A(O)B(O)A(t)B(t»dt where A and B are physical operations in the Heisenberg representa­ tion and -~ Tr(e ••• ) < ... > 6ft T- is an equilibrium average. In equation (1) it is useful to regard the product AB as the product of two operators in cases in which A and B refer to different spatial points in a condensed matter sys­ tem and/or in which A and B behave dynamically in a quasiharmonic way. In the second case, one has a two quasiparticle correlation function and CAB;AB(w) gives information about quasiparticle inter­ actions. Condensed matter physics has increasingly turned its attention to correlation functions of this type during the last 15 years, partly because the two point and/or one-particle correlation functions have by now been very thoroughly studied in many cases. The study of four point and/or two quasiparticle correlations has proceeded somewhat independently in several diverse fields of condensed matter physics and it was one purpose of the institute to bring experts from these different fields together to describe the current state of their art to each other and to advanced students.Physics.Condensed matter.Physics.Condensed Matter Physics.Springer eBookshttp://dx.doi.org/10.1007/978-1-4684-3360-9URN:ISBN:9781468433609