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Transport in multilayered nanostruct...
~
Freericks, James K.
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Transport in multilayered nanostructures : = the dynamical mean-field theory approach /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Transport in multilayered nanostructures :/ James K. Freericks.
Reminder of title:
the dynamical mean-field theory approach /
Author:
Freericks, James K.
Published:
Covent Garden, London :Imperial College Press, : c2016.,
Description:
xvii, 432 p. :ill. (some col.) ;24 cm.
Subject:
Many-body problem. -
ISBN:
9781783268573
Transport in multilayered nanostructures : = the dynamical mean-field theory approach /
Freericks, James K.
Transport in multilayered nanostructures :
the dynamical mean-field theory approach /James K. Freericks. - 2nd ed. - Covent Garden, London :Imperial College Press,c2016. - xvii, 432 p. :ill. (some col.) ;24 cm.
Includes bibliographical references and index.
Introduction to multilayered nanostructures --
"Over the last 25 years, dynamical mean-field theory (DMFT) hasemerged as one of the most powerful new developments in many-bodyphysics. Written by one of the key researchers in the field, thisbook presents the first comprehensive treatment of this ever-developing topic. Transport in Mutlilayered Nanostructures is varied and modern in its scope, and: Develops the formalism of many-body Green's functions using the equation-of-motion approachApplies DMFT to study transport in multilayered nanostructures, which is likely to be one of the most prominent applications of nanotechnology in the coming years Develops formalism first for the bulk and then for the inhomogeneous multilayered systems Describes in great detail the science behind the metal-insulator transition, electronic charge reconstruction, strongly correlatedcontributions to capacitance, and superconductivity Includes complete derivations and emphasizes how to carry out numerical calculations, including discussions of parallel programming algorithms Provides descriptions of the crossover from tunneling to thermally activated transport, of the properties of Josephson junctions with barriers tuned near the metal-insulator transitionof thermoelectric coolers and power generators and of nonequilibrium extensions to determine current-voltage characteristics as applications of the theory A series of over 40problems help develop the skills to allow readers to reach the level of being able to contribute to research. This book is suitable for an advanced graduate course in DMFT, and for individualized study by graduate students, postdoctoral fellows and advanced researchers wishing to enter the field"
ISBN: 9781783268573NT1860
LCCN: 2016007928Subjects--Topical Terms:
525019
Many-body problem.
LC Class. No.: QC176.8.N35 / .F74 2016
Dewey Class. No.: 620/.5.
Transport in multilayered nanostructures : = the dynamical mean-field theory approach /
LDR
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eng
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Freericks, James K.
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Transport in multilayered nanostructures :
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the dynamical mean-field theory approach /
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2nd ed.
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Covent Garden, London :
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Imperial College Press,
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c2016.
300
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xvii, 432 p. :
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ill. (some col.) ;
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24 cm.
504
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Includes bibliographical references and index.
505
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Introduction to multilayered nanostructures --
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Dynamical mean-field theory in the bulk --
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Dynamical mean-field theory of a multilayered nanostructure --
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Thouless energy and normal-state transport --
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Josephson junctions and superconducting transport --
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Thermal transport --
$t
Many-body effects on capacitance --
$t
Nonequilibrium effects in multilayers --
$t
Future directions.
520
#
$a
"Over the last 25 years, dynamical mean-field theory (DMFT) hasemerged as one of the most powerful new developments in many-bodyphysics. Written by one of the key researchers in the field, thisbook presents the first comprehensive treatment of this ever-developing topic. Transport in Mutlilayered Nanostructures is varied and modern in its scope, and: Develops the formalism of many-body Green's functions using the equation-of-motion approachApplies DMFT to study transport in multilayered nanostructures, which is likely to be one of the most prominent applications of nanotechnology in the coming years Develops formalism first for the bulk and then for the inhomogeneous multilayered systems Describes in great detail the science behind the metal-insulator transition, electronic charge reconstruction, strongly correlatedcontributions to capacitance, and superconductivity Includes complete derivations and emphasizes how to carry out numerical calculations, including discussions of parallel programming algorithms Provides descriptions of the crossover from tunneling to thermally activated transport, of the properties of Josephson junctions with barriers tuned near the metal-insulator transitionof thermoelectric coolers and power generators and of nonequilibrium extensions to determine current-voltage characteristics as applications of the theory A series of over 40problems help develop the skills to allow readers to reach the level of being able to contribute to research. This book is suitable for an advanced graduate course in DMFT, and for individualized study by graduate students, postdoctoral fellows and advanced researchers wishing to enter the field"
650
# 0
$a
Many-body problem.
$3
525019
650
# 0
$a
Mean field theory.
$3
859171
650
# 0
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Nanostructures
$x
Mathematics.
$3
629815
650
# 0
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Thin films, Multilayered
$x
Mathematics.
$3
3167939
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壽豐校區(SF Campus)
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last issue:
1 (2017/05/18)
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六樓西文書區HC-Z(6F Western Language Books)
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六樓西文書區HC-Z(6F Western Language Books)
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QC176.8.N35 F74 2016
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