Sequential Aggregate Signatures with Short Public Keys without Random Oracles
Kwangsu Lee, Dong Hoon Lee, Moti Yung

TL;DR
This paper introduces the first sequential aggregate signature schemes with short public keys in prime order bilinear groups, achieving security in the standard model without relying on random oracles.
Contribution
It presents novel sequential aggregate signature schemes with constant-size public keys and efficient operations, addressing a key open problem in cryptography.
Findings
Schemes are secure under static assumptions in the standard model.
Public keys have a constant number of group elements.
Each message signing and verification uses a constant number of pairings.
Abstract
The notion of aggregate signature has been motivated by applications and it enables any user to compress different signatures signed by different signers on different messages into a short signature. Sequential aggregate signature, in turn, is a special kind of aggregate signature that only allows a signer to add his signature into an aggregate signature in sequential order. This latter scheme has applications in diversified settings such as in reducing bandwidth of certificate chains and in secure routing protocols. Lu, Ostrovsky, Sahai, Shacham, and Waters (EUROCRYPT 2006) presented the first sequential aggregate signature scheme in the standard model. The size of their public key, however, is quite large (i.e., the number of group elements is proportional to the security parameter), and therefore, they suggested as an open problem the construction of such a scheme with short keys.…
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