Simple Schnorr multi-signatures with applications to Bitcoin

Author:

Maxwell Gregory,Poelstra Andrew,Seurin YannickORCID,Wuille Pieter

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computer Science Applications

Reference47 articles.

1. Accredited Standards Committee X9. American National Standard X9.62-2005, Public Key Cryptography for the Financial Services Industry, The Elliptic Curve Digital Signature Algorithm (ECDSA) (2005).

2. Andresen G.: M-of-N standard transactions. Bitcoin Improvement Proposal. https://github.com/bitcoin/bips/blob/master/bip-0011.mediawiki (2011).

3. Bagherzandi A., Cheon J.H., Stanislaw J.: Multisignatures secure under the discrete logarithm assumption and a generalized forking lemma. In: Ning, P., Syverson, P.F., Jha, S. (eds.) ACM Conference on Computer and Communications Security-CCS 2008, pp. 449–458. ACM (2008).

4. Bernstein D.J.: Multi-user Schnorr security, revisited. IACR Cryptology ePrint Archive, Report 2015/996 (2015). http://eprint.iacr.org/2015/996 .

5. Bernstein D.J., Duif N., Lange T., Schwabe P., Yang B.-Y.: High-speed high-security signatures. In: Preneel, B., Takagi, T. (eds.) Cryptographic Hardware and Embedded Systems-CHES 2011, LNCS, vol. 6917, pp. 124–142. Springer, Berlin (2011).

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