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Asynchronous BFT Asset Transfer: Quasi-Anonymous, Light, and Consensus-Free

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arxiv 2405.18072 v2 pith:QIBH6HMP submitted 2024-05-28 cs.DC

classification cs.DC
keywords assetmeanssystemtransfertransfersasynchronousconsensus-freedomlightness
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This paper introduces a new asynchronous Byzantine-tolerant asset transfer system (cryptocurrency) with three noteworthy properties: quasi-anonymity, lightness, and consensus-freedom. Quasi-anonymity means no information is leaked regarding the receivers and amounts of the asset transfers. Lightness means that the underlying cryptographic schemes are \textit{succinct} (\textit{i.e.}, they produce short-sized and quickly verifiable proofs) and each process only stores its own transfers while keeping communication cost as low as possible. Consensus-freedom means the system does not rely on a total order of asset transfers. The proposed algorithm is the first asset transfer system that simultaneously fulfills all these properties in the presence of asynchrony and Byzantine processes. To obtain them, the paper adopts a modular approach combining a new distributed object called ``agreement proof'' and well-known techniques such as commitments, universal accumulators, and zero-knowledge proofs.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Mangrove: Fast and Parallelizable State Replication for Blockchains

    cs.DC 2025-09 conditional novelty 6.0 of 10

    Mangrove gives each smart contract its own consensus instance, enabling parallel state replication without a global order and claiming two-step optimistic latency.

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