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      Experimental demonstration of Gaussian protocols for one-sided device-independent quantum key distribution

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          The security of practical quantum key distribution

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            Generalized entropic uncertainty relations.

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              Measurement-device-independent quantum key distribution.

              How to remove detector side channel attacks has been a notoriously hard problem in quantum cryptography. Here, we propose a simple solution to this problem--measurement-device-independent quantum key distribution (QKD). It not only removes all detector side channels, but also doubles the secure distance with conventional lasers. Our proposal can be implemented with standard optical components with low detection efficiency and highly lossy channels. In contrast to the previous solution of full device independent QKD, the realization of our idea does not require detectors of near unity detection efficiency in combination with a qubit amplifier (based on teleportation) or a quantum nondemolition measurement of the number of photons in a pulse. Furthermore, its key generation rate is many orders of magnitude higher than that based on full device independent QKD. The results show that long-distance quantum cryptography over say 200 km will remain secure even with seriously flawed detectors.

                Author and article information

                Journal
                Optica
                Optica
                The Optical Society
                2334-2536
                2016
                2016
                June 10 2016
                June 20 2016
                : 3
                : 6
                : 634
                Article
                10.1364/OPTICA.3.000634
                afe39b9c-54a9-4bad-99e0-a70881f8175a
                © 2016
                History

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