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      Test of Nonlocal Energy Alteration between Two Quantum Memories

      , , ,
      Physical Review Letters
      American Physical Society (APS)

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          Observing the average trajectories of single photons in a two-slit interferometer.

          A consequence of the quantum mechanical uncertainty principle is that one may not discuss the path or "trajectory" that a quantum particle takes, because any measurement of position irrevocably disturbs the momentum, and vice versa. Using weak measurements, however, it is possible to operationally define a set of trajectories for an ensemble of quantum particles. We sent single photons emitted by a quantum dot through a double-slit interferometer and reconstructed these trajectories by performing a weak measurement of the photon momentum, postselected according to the result of a strong measurement of photon position in a series of planes. The results provide an observationally grounded description of the propagation of subensembles of quantum particles in a two-slit interferometer.
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            Quantum interface between light and atomic ensembles

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              Long-distance quantum communication with atomic ensembles and linear optics

              Quantum communication holds promise for absolutely secure transmission of secret messages and the faithful transfer of unknown quantum states. Photonic channels appear to be very attractive for the physical implementation of quantum communication. However, owing to losses and decoherence in the channel, the communication fidelity decreases exponentially with the channel length. Here we describe a scheme that allows the implementation of robust quantum communication over long lossy channels. The scheme involves laser manipulation of atomic ensembles, beam splitters, and single-photon detectors with moderate efficiencies, and is therefore compatible with current experimental technology. We show that the communication efficiency scales polynomially with the channel length, and hence the scheme should be operable over very long distances.
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                Author and article information

                Contributors
                Journal
                PRLTAO
                Physical Review Letters
                Phys. Rev. Lett.
                American Physical Society (APS)
                0031-9007
                1079-7114
                March 2025
                March 3 2025
                : 134
                : 9
                Article
                10.1103/PhysRevLett.134.093601
                200754e6-0695-42b9-96ad-167526148577
                © 2025

                https://link.aps.org/licenses/aps-default-license

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