articleTop 1% cited
Decoherence and the Transition from Quantum to Classical
Physics Today · 1991 · Vol. 44(10) · pp. 36–44
Wojciech H. Zurek✉(Los Alamos National Laboratory)
Abstract
Quantum mechanics works exceedingly well in all practical applications. No example of conflict between its predictions and experiment is known. Without quantum physics we could not explain the behavior of solids, the structure and function of DNA, the color of the stars, the action of lasers or the properties of superfluids. Yet well over half a century after its inception, the debate about the relation of quantum mechanics to the familiar physical world continues. How can a theory that can account ith precision for everything we can measure still be deemed lacking?
Quantum Mechanics and ApplicationsBiofield Effects and BiophysicsPhilosophy and History of ScienceQuantum decoherencePhysicsTheoretical physicsAction (physics)Quantum dissipationQuantum mechanicsSuperfluidityQuantumClassical mechanics
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Annals of Physics · 1963 · 2,819 citations
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