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- W3088643743 abstract "In a standard interferometry experiment, one measures the phase difference between two paths by recombining the two wave packets on a beam splitter. However, it has been recognized that the phase can also be estimated via local measurements by using an ancillary particle in a known superposition state. In this work, we review and further explicate these protocols for different types of particles (bosons or fermions, charged or uncharged), with a particular emphasis on the subtleties that arise when the phase is due to the coupling to an Abelian gauge field. In that case, we show that the measurable quantities are space-time loop integrals of the four-vector potential, enclosed by two identical particles or by a particle-antiparticle pair. Furthermore, we generalize our considerations to scenarios involving an arbitrary number of parties performing local measurements on a general charged fermionic state. Finally, as a concrete application, we analyze a recent proposal involving the time-dependent Aharonov-Bohm effect [C. Marletto and V. Vedral, Phys. Rev. Lett. 125, 040401 (2020)]." @default.
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- W3088643743 date "2020-12-21" @default.
- W3088643743 modified "2023-10-17" @default.
- W3088643743 title "Probing quantum coherence at a distance and Aharonov-Bohm nonlocality" @default.
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- W3088643743 doi "https://doi.org/10.1103/physreva.102.062214" @default.
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