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The quantum-to-classical transition and decoherence
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I give a pedagogical overview of decoherence and its role in providing a dynamical account of the quantum-to-classical transition. The formalism and concepts of decoherence theory are reviewed, followed by a survey of master equations and decoherence models. I also discuss methods for mitigating decoherence in quantum information processing and describe selected experimental investigations of decoherence processes.
Forward citations
Cited by 3 Pith papers
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Characterising extremal decoherence by quantum measurement incompatibility
Extremal decoherence channels' compatibility regions are maximized by SIC-POVMs, making SIC existence equivalent to a joint measurability condition.
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Witnessing non-objectivity in the framework of strong quantum Darwinism
Comparing a system-environment evolution with and without an objectivity-enforcing projection yields a lower-bound witness for non-objectivity in strong quantum Darwinism.
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Quantum-to-classical transition and the emergence of trajectory level Darwinism with measurements distributed in time: a path integral approach
Repeated weak measurements produce a Gaussian suppression of records away from the classical path, but the advertised heating, Brownian-motion bound, and optomechanics predictions are absent.
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