Universality of local weak interactions and its application for interferometric alignment

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Abstract

The modification of the effect of interactions of a particle as a function of its preselected and postselected states is analyzed theoretically and experimentally. The universality property of this modification in the case of local interactions of a spatially preselected and postselected particle has been found. It allowed us to define an operational approach for the characterization of the presence of a quantum particle in a particular place: the way it modifies the effect of local interactions. The experiment demonstrating this universality property provides an efficient interferometric alignment method, in which the position of the beam on a single detector throughout one phase scan yields all misalignment parameters.

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Dziewior, J., Knips, L., Farfurnik, D., Senkalla, K., Benshalom, N., Efroni, J., … Vaidman, L. (2019). Universality of local weak interactions and its application for interferometric alignment. Proceedings of the National Academy of Sciences of the United States of America, 116(8), 2881–2890. https://doi.org/10.1073/pnas.1812970116

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