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Experimental quantum key distribution with finite-key security analysis for noisy channels

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arxiv 1406.4342 v1 pith:H6XT2TLF submitted 2014-06-17 quant-ph

Experimental quantum key distribution with finite-key security analysis for noisy channels

classification quant-ph
keywords quantumattacksconditionsdistributionfinite-keyrateaccordingachievable
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In quantum key distribution implementations, each session is typically chosen long enough so that the secret key rate approaches its asymptotic limit. However, this choice may be constrained by the physical scenario, as in the perspective use with satellites, where the passage of one terminal over the other is restricted to a few minutes. Here we demonstrate experimentally the extraction of secure keys leveraging an optimal design of the prepare-and-measure scheme, according to recent finite-key theoretical tight-bounds. The experiment is performed in different channel conditions, and assuming two distinct attack models: individual attacks, or general quantum attacks. The request on the number of exchanged qubits is then obtained as a function of the key size and of the ambient quantum bit error rate. The results indicate that viable conditions for effective symmetric, and even one-time-pad, cryptography are achievable.

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