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Entanglement and Decoherence

Editat de Andreas Buchleitner, Carlos Viviescas, Markus Tiersch
en Limba Engleză Hardback – 25 noi 2008
Entanglement and (de-)coherence arguably define the central issues of concern in present day quantum information theory. Entanglement being a consequence of the quantum mechanical superposition principle for composite systems, a better understanding of the environment-induced destruction of coherent superposition states is required to devise novel strategies for harvesting quantum interference phenomena.
The present book collects a series of advanced lectures on the theoretical foundations of this active research field, from mathematical aspects underlying quantum topology to mesoscopic transport theory.
All lectures start out from an elementary level and proceed along a steep learning curve. This makes the material particularly suitable for student seminars on the more fundamental theoretical aspects of quantum information, and equally useful as supplementary reading for advanced lectures on this topic.
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Specificații

ISBN-13: 9783540881681
ISBN-10: 3540881689
Pagini: 332
Ilustrații: X, 320 p.
Dimensiuni: 160 x 241 x 23 mm
Greutate: 0.66 kg
Ediția:2009
Editura: Springer
Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Geometry of State Spaces.- Basic Concepts of Entangled States.- Topology and Quantum Computing.- Entanglement in Phase Space.- to Decoherence Theory.- Diffusive Spin Transport.

Textul de pe ultima copertă

Entanglement and (de-)coherence arguably define the central issues of concern in present day quantum information theory. Entanglement being a consequence of the quantum mechanical superposition principle for composite systems, a better understanding of the environment-induced destruction of coherent superposition states is required to devise novel strategies for harvesting quantum interference phenomena.
The present book collects a series of advanced lectures on the theoretical foundations of this active research field, from mathematical aspects underlying quantum topology to mesoscopic transport theory.
All lectures start out from an elementary level and proceed along a steep learning curve. This makes the material particularly suitable for student seminars on the more fundamental theoretical aspects of quantum information, and equally useful as supplementary reading for advanced lectures on this topic.