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Security of quantum key distribution from generalised entropy accumulation
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The goal of quantum key distribution (QKD) is to establish a secure key between two parties connected by an insecure quantum channel. To use a QKD protocol in practice, one has to prove that a finite size key is secure against general attacks: no matter the adversary's attack, they cannot gain useful information about the key. A much simpler task is to prove security against collective attacks, where the adversary is assumed to behave identically and independently in each round. In this work, we provide a formal framework for general QKD protocols and show that for any protocol that can be expressed in this framework, security against general attacks reduces to security against collective attacks, which in turn reduces to a numerical computation. Our proof relies on a recently developed information-theoretic tool called generalised entropy accumulation and can handle generic prepare-and-measure protocols directly without switching to an entanglement-based version.
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Cited by 1 Pith paper
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Topological State-Aware Simulation Framework for Inter-Satellite Twin-Field QKD Networks
A satellite twin-field QKD simulation with a topological data-analysis gate shows no rate advantage over the same gate without TDA, and the authors state the full composable-security proof remains incomplete.
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