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2020 | OriginalPaper | Buchkapitel

Privacy-Preserving Cross-Chain Atomic Swaps

verfasst von : Apoorvaa Deshpande, Maurice Herlihy

Erschienen in: Financial Cryptography and Data Security

Verlag: Springer International Publishing

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Abstract

Recently, there has been a lot of interest in studying the transfer of assets across different blockchains in the form of cross-chain atomic swaps. Unfortunately, the current candidates of atomic swaps (hash-lock time contracts) offer no privacy; the identities as well as the exact trade that happened between any two parties is publicly visible.
In this work, we explore the different notions of privacy that we can hope for in an atomic swap protocol. Concretely, we define an atomic swap as a two-party protocol and formalize the different notions of privacy in the form of anonymity, confidentiality and indistinguishability of swap transactions.
As a building block, we abstract out the primitive of Atomic Release of Secrets (\(\mathsf {ARS}\)) which captures atomic exchange of a secret for a pre-decided transaction. We then show how \(\mathsf {ARS}\) can be used to build privacy-preserving cross-chain swaps.
We also show that the recently introduced notion of adapter signatures  [Poe18, War17] is a concrete instantiation of \(\mathsf {ARS}\) under the framework of Schnorr signatures  [Sch91] and thus, construct a private cross-chain swap using Schnorr signatures.

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Zurück zum Zitat Sasson, E.B., et al.: Zerocash: decentralized anonymous payments from bitcoin. In: 2014 IEEE Symposium on Security and Privacy, pp. 459–474. IEEE (2014) Sasson, E.B., et al.: Zerocash: decentralized anonymous payments from bitcoin. In: 2014 IEEE Symposium on Security and Privacy, pp. 459–474. IEEE (2014)
Metadaten
Titel
Privacy-Preserving Cross-Chain Atomic Swaps
verfasst von
Apoorvaa Deshpande
Maurice Herlihy
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-54455-3_38

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