Complementary Observables in Quantum Mechanics

Foundations of Physics 49 (6):506-531 (2019)
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Abstract

We review the notion of complementarity of observables in quantum mechanics, as formulated and studied by Paul Busch and his colleagues over the years. In addition, we provide further clarification on the operational meaning of the concept, and present several characterisations of complementarity—some of which new—in a unified manner, as a consequence of a basic factorisation lemma for quantum effects. We work out several applications, including the canonical cases of position–momentum, position–energy, number–phase, as well as periodic observables relevant to spatial interferometry. We close the paper with some considerations of complementarity in a noisy setting, focusing especially on the case of convolutions of position and momentum, which was a recurring topic in Paul’s work on operational formulation of quantum measurements and central to his philosophy of unsharp reality.

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The philosophy of Niels Bohr: the framework of complementarity.Henry J. Folse - 1985 - New York, N.Y.: Sole distributors for the U.S.A. and Canada, Elsevier Science Pub. Co..
Philosophic Foundations of Quantum Mechanics.H. Reichenbach - 1967 - British Journal for the Philosophy of Science 17 (4):326-328.
Philosophic Foundations of Quantum Mechanics.A. R. Turquette - 1945 - Philosophical Review 54 (5):513.

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