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Scattering matrix approach to non-st...
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Moskalets, Michael V.{me_controlnum}
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Scattering matrix approach to non-stationary quantum transport
Record Type:
Electronic resources : Monograph/item
Title/Author:
Scattering matrix approach to non-stationary quantum transport/ Michael V. Moskalets.
Author:
Moskalets, Michael V.{me_controlnum}
Published:
London :Imperial College Press ; : c2012.,
Description:
xviii, 278 p. :ill. (some col.)
Subject:
S-matrix theory. -
Online resource:
http://www.worldscientific.com/worldscibooks/10.1142/P822#t=toc
ISBN:
9781848168350 (electronic bk.)
Scattering matrix approach to non-stationary quantum transport
Moskalets, Michael V.{me_controlnum}
Scattering matrix approach to non-stationary quantum transport
[electronic resource] /Michael V. Moskalets. - London :Imperial College Press ;c2012. - xviii, 278 p. :ill. (some col.)
Includes bibliographical references (p. 261-276) and index.
The aim of this book is to introduce the basic elements of the scattering matrix approach to transport phenomena in dynamical quantum systems of non-interacting electrons. This approach admits a physically clear and transparent description of transport processes in dynamical mesoscopic systems promising basic elements of solid-state devices for quantum information processing. One of the key effects, the quantum pump effect, is considered in detail. In addition, the theory for a recently implemented new dynamical source - injecting electrons with time delay much larger than the electron coherence time - is offered. This theory provides a simple description of quantum circuits with such a single-particle source and shows in an unambiguous way that the tunability inherent to the dynamical systems leads to a number of unexpected but fundamental effects.
Electronic reproduction.
Singapore :
World Scientific Publishing Co.,
2012.
System requirements: Adobe Acrobat Reader.
ISBN: 9781848168350 (electronic bk.)Subjects--Topical Terms:
930584
S-matrix theory.
LC Class. No.: QC174.35.S2
Dewey Class. No.: 530.122
Scattering matrix approach to non-stationary quantum transport
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xviii, 278 p. :
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ill. (some col.)
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Includes bibliographical references (p. 261-276) and index.
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The aim of this book is to introduce the basic elements of the scattering matrix approach to transport phenomena in dynamical quantum systems of non-interacting electrons. This approach admits a physically clear and transparent description of transport processes in dynamical mesoscopic systems promising basic elements of solid-state devices for quantum information processing. One of the key effects, the quantum pump effect, is considered in detail. In addition, the theory for a recently implemented new dynamical source - injecting electrons with time delay much larger than the electron coherence time - is offered. This theory provides a simple description of quantum circuits with such a single-particle source and shows in an unambiguous way that the tunability inherent to the dynamical systems leads to a number of unexpected but fundamental effects.
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2012.
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System requirements: Adobe Acrobat Reader.
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World Scientific (Firm)
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http://www.worldscientific.com/worldscibooks/10.1142/P822#t=toc
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