Search Results - "Houlmann, R"

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  1. 1

    Experimental bit commitment based on quantum communication and special relativity by Lunghi, T, Kaniewski, J, Bussières, F, Houlmann, R, Tomamichel, M, Kent, A, Gisin, N, Wehner, S, Zbinden, H

    Published in Physical review letters (01-11-2013)
    “…Bit commitment is a fundamental cryptographic primitive in which Bob wishes to commit a secret bit to Alice. Perfectly secure bit commitment between two…”
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    Journal Article
  2. 2

    A fast and versatile quantum key distribution system with hardware key distillation and wavelength multiplexing by Walenta, N, Burg, A, Caselunghe, D, Constantin, J, Gisin, N, Guinnard, O, Houlmann, R, Junod, P, Korzh, B, Kulesza, N, Legré, M, Lim, C W, Lunghi, T, Monat, L, Portmann, C, Soucarros, M, Thew, R T, Trinkler, P, Trolliet, G, Vannel, F, Zbinden, H

    Published in New journal of physics (01-01-2014)
    “…We present a compactly integrated, 625 MHz clocked coherent one-way quantum key distribution system which continuously distributes secret keys over an optical…”
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    Journal Article
  3. 3

    Practical Relativistic Bit Commitment by Lunghi, T, Kaniewski, J, Bussières, F, Houlmann, R, Tomamichel, M, Wehner, S, Zbinden, H

    Published in Physical review letters (17-07-2015)
    “…Bit commitment is a fundamental cryptographic primitive in which Alice wishes to commit a secret bit to Bob. Perfectly secure bit commitment between two…”
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    Journal Article
  4. 4

    Quantum random number generation for 1.25 GHz quantum key distribution systems by Martin, A, Sanguinetti, B, Lim, C. C. W, Houlmann, R, Zbinden, H

    Published 29-04-2015
    “…Security proofs of quantum key distribution (QKD) systems usually assume that the users have access to source of perfect randomness. State-of-the-art QKD…”
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    Journal Article
  5. 5

    Experimental bit commitment based on quantum communication and special relativity by Lunghi, T, Kaniewski, J, Bussieres, F, Houlmann, R, Tomamichel, M, Kent, A, Gisin, N, Wehner, S, Zbinden, H

    Published 19-07-2013
    “…Phys. Rev. Lett. 111, 180504 (2013) Bit commitment is a fundamental cryptographic primitive in which Bob wishes to commit a secret bit to Alice. Perfectly…”
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    Journal Article