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Provably Secure and Practical Quantum Key Distribution over 307 km of Optical Fibre Boris Korzh,1, a) Charles Ci Wen Lim,1, b) Raphael Houlmann,1 Nicolas Gisin,1 Ming Jun Li,2 Daniel Nolan,2 Bruno Sanguinetti,1 Rob Thew,
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Document Date: 2015-03-24 06:08:50


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File Size: 2,61 MB

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City

New York / /

Company

Hugo Zbinden1 1 Group / Switzerland Corning Incorporated / Quantum / Switzerland 2 Corning Incorporated / Shimizu / /

Country

United States / /

Currency

CNY / /

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Facility

University of Geneva / /

IndustryTerm

secret key post-processing flow / optical fibre technology hold / distributed-phase reference protocols / classical post-processing block size / abstract device / error correction software / minimum classical-post-processing / manufacturing process / /

Organization

University of Geneva / Geneva / /

Person

Optical Fibre Boris Korzh / Olivier Guinnard / Bob / S. V. Polyakov / Charles Ci Wen Lim / Alice / Boris Korzh / Mathilde Soucarros / J. Fan / N. Gisin / V / A. Migdall / Nino Walenta / Raphael Houlmann / Eve / /

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ProgrammingLanguage

V / /

ProvinceOrState

New York / /

PublishedMedium

Applied Physics Letters / Nature Photonics / New Journal of Physics / Journal of Modern Optics / /

Technology

encryption / semiconductor / two distributed-phase reference protocols / FPGA / ethernet / QKD protocol / laser / cryptography / COW protocol / Public key / optical fibre / real protocol / secure QKD protocol / optical fibre technology / secret key / similar QKD protocol / cooling technology / /

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