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Toward Undetectable Quantum Key Distribution over Bosonic Channels

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arxiv 1904.12363 v3 pith:FCPRRP2H submitted 2019-04-28 cs.IT cs.CRmath.ITquant-ph

classification cs.ITcs.CRmath.ITquant-ph
keywords channelquantumadversarydistributionbosonicboundcovertexisting
verification ladder T0 review T1 audit T2 compute T3 formal
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We show that covert secret key expansion is possible using a public authenticated classical channel and a quantum channel largely under control of an adversary, which we precisely define. We also prove a converse result showing that, under the golden standard of quantum key distribution by which the adversary completely controls the quantum channel, no covert key generation is possible. We propose a protocol based on pulse-position modulation and multi-level coding that allows one to use traditional quantum key distribution (QKD) protocols while ensuring covertness, in the sense that no statistical test by the adversary can detect the presence of communication better than a random guess. When run over a bosonic channel, our protocol can leverage existing discrete-modulated continuous variable protocols. Since existing techniques to bound Eve's information do not directly apply, we develop a new bound that results in positive throughput for a range of channel parameters.

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  1. Experimental Covert Communication Using Software-Defined Radio

    cs.NI 2025-06 conditional novelty 6.0 of 10

    First experimental RF demonstration of square-root-law covert communication, implemented with sparse-coded BPSK on USRP X310 radios, keeps the warden's error near 0.5 while Bob's raw symbol error is about 0.17.

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