The Theory of Open Quantum Systems
Теория открытых квантовых систем
2007-01-25
SCID: 54.1/xdja9hnq
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completely positive dynamical semigroupsenvironment-induced decoherencenon-Markovian quantum processesopen quantum systemsquantum Markov processes
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Abstract (AI)
Abstract This book treats the central physical concepts and mathematical techniques used to investigate the dynamics of open quantum systems. To provide a self-contained presentation, the text begins with a survey of classical probability theory and with an introduction to the foundations of quantum mechanics, with particular emphasis on its statistical interpretation and on the formulation of generalized measurement theory through quantum operations and effects. The fundamentals of density matrix theory, quantum Markov processes, and completely positive dynamical semigroups are developed. The most important master equations used in quantum optics and condensed matter theory are derived and applied to the study of many examples. Special attention is paid to the Markovian and non-Markovian theory of environment induced decoherence, its role in the dynamical description of the measurement process, and to the experimental observation of decohering electromagnetic field states. The book includes the modern formulation of open quantum systems in terms of stochastic processes in Hilbert space. Stochastic wave function methods and Monte Carlo algorithms are designed and applied to important examples from quantum optics and atomic physics. The fundamentals of the treatment of non-Markovian quantum processes in open systems are developed on the basis of various mathematical techniques, such as projection superoperator methods and influence functional techniques. In addition, the book expounds the relativistic theory of quantum measurements and the density matrix theory of relativistic quantum electrodynamics.
Key Findings
1
It analyzes Markovian and non-Markovian environment-induced decoherence, including its role in measurement dynamics and experimentally observed decoherence of electromagnetic field states.
2
It develops non-Markovian quantum-process methods using projection superoperators and influence functionals, and includes a relativistic theory of measurements and density matrices in relativistic quantum electrodynamics.
3
It formulates quantum Markov processes and completely positive dynamical semigroups, deriving master equations applied to quantum optics and condensed-matter examples.
4
It presents stochastic Hilbert-space formulations of open systems, including stochastic wave-function methods and Monte Carlo algorithms for quantum-optical and atomic-physics applications.
5
The book develops a self-contained mathematical framework for open quantum-system dynamics, combining density matrices, quantum operations, and generalized measurements.
Research Object
Open quantum systems
Research Subject
their dynamics, including Markovian and non-Markovian processes, environment-induced decoherence, quantum measurement, and master-equation-based evolution
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2007-01-25
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