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Quantum Measurements and Decoherence: Models and Phenomenology: Fundamental Theories of Physics, cartea 110

Autor M. Mensky
en Limba Engleză Paperback – 15 dec 2010
Quantum measurement (Le., a measurement which is sufficiently precise for quantum effects to be essential) was always one of the most impor­ tant points in quantum mechanics because it most evidently revealed the difference between quantum and classical physics. Now quantum measure­ ment is again under active investigation, first of all because of the practical necessity of dealing with highly precise and complicated measurements. The nature of quantum measurement has become understood much bet­ ter during this new period of activity, the understanding being expressed by the concept of decoherence. This term means a physical process lead­ ing from a pure quantum state (wave function) of the system prior to the measurement to its state after the measurement which includes classical elements. More concretely, decoherence occurs as a result of the entangle­ ment of the measured system with its environment and results in the loss of phase relations between components of the wave function of the measured system. Decoherence is essentially nothing else than quantum measurement, but considered from the point of view of its physical mechanism and resolved in time. The present book is devoted to the two concepts of quantum measure­ ment and decoherence and to their interrelation, especially in the context of continuous quantum measurement.
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Specificații

ISBN-13: 9789048154227
ISBN-10: 9048154227
Pagini: 252
Ilustrații: XVI, 231 p.
Dimensiuni: 155 x 235 x 17 mm
Greutate: 0.35 kg
Ediția:Softcover reprint of hardcover 1st ed. 2000
Editura: SPRINGER NETHERLANDS
Colecția Springer
Seria Fundamental Theories of Physics

Locul publicării:Dordrecht, Netherlands

Public țintă

Research

Cuprins

1 Introduction.- 2 The Physics behind Quantum Measurements.- 3 Measurement induced uncertainties.- 4 Continuous Quantum Measurements: The General Notion.- 5 Fuzzy Continuous Measurements: Phenomenology.- 6 Restricted Path Integrals: General Features.- 7 The Monitoring of Energy.- 8 Monitoring by a series of observations.- 9 The Quantum Zeno effect in a passive setup.- 10 RPI and the Philosophy of Quantum Mechanics.- 11 Conclusion: New Prospects.- A The Formalism of Quantum Mechanics.- A1 The density matrix.- A1.1 Subsystem state.- A1.2 Interpretation of a density matrix.- A1.3 Decomposition of a density matrix.- A2 Uncertainty relations.- A3 Technics of path integrals.- A3.1 Propagators and path integrals.- A3.2 Definition of a path integral.- A3.3 Gaussian path integrals.- References.