Georg Fuchsbauer

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38ranked-venue papers
16as first author
10since 2021 · last 2026
0000-0001-5672-5850ORCID · reported

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 38 · 16 first-author · 10 since 2021Theory of computation · 2 · 1 first-author
YearPublicationVenuePosition
2026 Lattice-Based Updatable KEM for Group Messaging
Joël Alwen, Georg Fuchsbauer, Marta Mularczyk, Doreen Riepel
CRYPTO (10)2
2026 Round-Optimal Threshold Blind Signatures Without Random Oracles
Georg Fuchsbauer, Fabian Regen, Hoeteck Wee
CRYPTO (7)1
2025 Schnorr Signatures are Tightly Secure in the ROM Under a Non-interactive Assumption
Gavin Cho, Georg Fuchsbauer, Adam O'Neill, Marek Sefranek
CRYPTO (6)2
2024 On Security Proofs of Existing Equivalence Class Signature Schemes
Balthazar Bauer, Georg Fuchsbauer, Fabian Regen
ASIACRYPT (2)2
2024 Updatable Public-Key Encryption, Revisited
Joël Alwen, Georg Fuchsbauer, Marta Mularczyk
EUROCRYPT (6)2
2024 Concurrently Secure Blind Schnorr Signatures
Georg Fuchsbauer, Mathias Wolf
EUROCRYPT (2)1
2022 SNACKs: Leveraging Proofs of Sequential Work for Blockchain Light Clients
Hamza Abusalah, Georg Fuchsbauer, Peter Gazi, Karen Azari
ASIACRYPT (1)2
2022 Non-interactive Mimblewimble Transactions, Revisited
Georg Fuchsbauer, Michele Orrù
ASIACRYPT (1)1
2022 Double-authentication-preventing signatures in the standard model
abstract
A double-authentication preventing signature (DAPS) scheme is a digital signature scheme equipped with a self-enforcement mechanism. Messages consist of an address and a payload component, and a signer is penalized if she signs two messages with the same addresses but different payloads. The penalty is the disclosure of the signer’s signing key. Most of the existing DAPS schemes are proved secure in the random oracle model (ROM), while the efficient ones in the standard model only support address spaces of polynomial size. We present DAPS schemes that are efficient, secure in the standard model under standard assumptions and support large address spaces. Our main construction builds on vector commitments (VC) and double-trapdoor chameleon hash functions (DCH). We also provide a DAPS realization from Groth–Sahai (GS) proofs that builds on a generic construction by Derler et al., which they instantiate in the ROM. The GS-based construction, while less efficient than our main one, shows that a general yet efficient instantiation of DAPS in the standard model is possible. An interesting feature of our main construction is that it can be easily modified to guarantee security even in the most challenging setting where no trusted setup is provided. To the best of our knowledge, ours seems to be the first construction achieving this in the standard model.
Dario Catalano, Georg Fuchsbauer, Azam Soleimanian
J. Comput. Secur.2
2021 The One-More Discrete Logarithm Assumption in the Generic Group Model
Balthazar Bauer, Georg Fuchsbauer, Antoine Plouviez
ASIACRYPT (4)2
2020 A Classification of Computational Assumptions in the Algebraic Group Model
Balthazar Bauer, Georg Fuchsbauer, Julian Loss
CRYPTO (2)2
2020 Blind Schnorr Signatures and Signed ElGamal Encryption in the Algebraic Group Model
Georg Fuchsbauer, Antoine Plouviez, Yannick Seurin
EUROCRYPT (2)1
2019 WI Is Not Enough: Zero-Knowledge Contingent (Service) Payments Revisited
abstract
While fair exchange of goods is known to be impossible without assuming a trusted party, smart contracts in cryptocurrencies forgo such parties by assuming trust in the currency system. They allow a seller to sell a digital good, which the buyer will obtain if and only if she pays. Zero-knowledge contingent payments (zkCP) show that, despite the limited expressiveness of its scripting language, this is even possible in Bitcoin by using zero-knowledge proofs. At CCS'17, Campanelli, Gennaro, Goldfeder and Nizzardo showed that the zkCP protocol was flawed, in that the buyer could obtain information about the good without paying. They proposed countermeasures to repair zkCP and moreover observed that zkCP cannot be used when a service is sold. They introduce the notion of ZK contingent payments for services and give an instantiation based on a witness-indistinguishable (WI) proof system. We show that some of their proposed countermeasures are not sufficient by presenting an attack against their fixed zkCP scheme. We also show that their realization of zkCP for services is insecure, as the buyer could learn the desired information (i.e., whether the service was provided) without paying; in particular, we show that WI of the used proof system is not enough.
Georg Fuchsbauer
CCS1
2019 Aggregate Cash Systems: A Cryptographic Investigation of Mimblewimble
Georg Fuchsbauer, Michele Orrù, Yannick Seurin
EUROCRYPT (1)1
2019 Structure-Preserving Signatures on Equivalence Classes and Constant-Size Anonymous Credentials
Georg Fuchsbauer, Christian Hanser, Daniel Slamanig
J. Cryptol.1
2018 Non-interactive Zaps of Knowledge
Georg Fuchsbauer, Michele Orrù
ACNS1
2018 The Algebraic Group Model and its Applications
Georg Fuchsbauer, Eike Kiltz, Julian Loss
CRYPTO (2)1
2016 Constrained PRFs for Unbounded Inputs with Short Keys
Hamza Abusalah, Georg Fuchsbauer
ACNS2
2016 Offline Witness Encryption
Hamza Abusalah, Georg Fuchsbauer, Krzysztof Pietrzak
ACNS2
2016 NIZKs with an Untrusted CRS: Security in the Face of Parameter Subversion
Mihir Bellare, Georg Fuchsbauer, Alessandra Scafuro
ASIACRYPT (2)2
2016 BeleniosRF: A Non-interactive Receipt-Free Electronic Voting Scheme
abstract
We propose a new voting scheme, BeleniosRF, that offers both receipt-freeness and end-to-end verifiability. It is receipt-free in a strong sense, meaning that even dishonest voters cannot prove how they voted. We provide a game-based definition of receipt-freeness for voting protocols with non-interactive ballot casting, which we name strong receipt-freeness (sRF). To our knowledge, sRF is the first game-based definition of receipt-freeness in the literature, and it has the merit of being particularly concise and simple. Built upon the Helios protocol, BeleniosRF inherits its simplicity and does not require any anti-coercion strategy from the voters. We implement BeleniosRF and show its feasibility on a number of platforms, including desktop computers and smartphones.
Pyrros Chaidos, Véronique Cortier, Georg Fuchsbauer, David Galindo
CCS3
2016 Constrained PRFs for Unbounded Inputs
Hamza Abusalah, Georg Fuchsbauer, Krzysztof Pietrzak
CT-RSA2
2016 Structure-Preserving Signatures and Commitments to Group Elements
Masayuki Abe, Georg Fuchsbauer, Jens Groth, Kristiyan Haralambiev, Miyako Ohkubo
J. Cryptol.2
2015 Practical Round-Optimal Blind Signatures in the Standard Model
Georg Fuchsbauer, Christian Hanser, Daniel Slamanig
CRYPTO (2)1
2015 A Quasipolynomial Reduction for Generalized Selective Decryption on Trees
Georg Fuchsbauer, Zahra Jafargholi, Krzysztof Pietrzak
CRYPTO (1)1
2015 Policy Privacy in Cryptographic Access Control
abstract
Cryptographic access control offers selective access to encrypted data via a combination of key management and functionality-rich cryptographic schemes, such as attribute-based encryption. Using this approach, publicly available meta-data may inadvertently leak information on the access policy that is enforced by cryptography, which renders cryptographic access control unusable in settings where this information is highly sensitive. We begin to address this problem by presenting rigorous definitions for policy privacy in cryptographic access control. For concreteness we set our results in the model of Role-Based Access Control (RBAC), where we identify and formalize several different flavors of privacy, however, our framework should serve as inspiration for other models of access control. Based on our insights we propose a new system which significantly improves on the privacy properties of state-of-the-art constructions. Our design is based on a novel type of privacy-preserving attribute-based encryption, which we introduce and show how to instantiate. We present our results in the context of a cryptographic RBAC system by Ferrara et al. (CSF'13), which uses cryptography to control read access to files, while write access is still delegated to trusted monitors. We give an extension of the construction that permits cryptographic control over write access. Our construction assumes that key management uses out-of-band channels between the policy enforcer and the users but eliminates completely the need for monitoring read/write access to the data.
Anna Lisa Ferrara, Georg Fuchsbauer, Bogdan Warinschi
CSF2
2015 Key-Homomorphic Constrained Pseudorandom Functions
Abhishek Banerjee 0001, Georg Fuchsbauer, Chris Peikert, Krzysztof Pietrzak, Sophie Stevens
TCC (2)2
2014 Adaptive Security of Constrained PRFs
Georg Fuchsbauer, Momchil Konstantinov, Krzysztof Pietrzak, Vanishree Rao
ASIACRYPT (2)1
2013 Efficient Signatures of Knowledge and DAA in the Standard Model
David Bernhard, Georg Fuchsbauer, Essam Ghadafi
ACNS2
2013 Cryptographically Enforced RBAC
abstract
Cryptographic access control promises to offer easily distributed trust and broader applicability, while reducing reliance on low-level online monitors. Traditional implementations of cryptographic access control rely on simple cryptographic primitives whereas recent endeavors employ primitives with richer functionality and security guarantees. Worryingly, few of the existing cryptographic access-control schemes come with precise guarantees, the gap between the policy specification and the implementation being analyzed only informally, if at all. In this paper we begin addressing this shortcoming. Unlike prior work that targeted ad-hoc policy specification, we look at the well-established Role-Based Access Control (RBAC) model, as used in a typical file system. In short, we provide a precise syntax for a computational version of RBAC, offer rigorous definitions for cryptographic policy enforcement of a large class of RBAC security policies, and demonstrate that an implementation based on attribute-based encryption meets our security notions. We view our main contribution as being at the conceptual level. Although we work with RBAC for concreteness, our general methodology could guide future research for uses of cryptography in other access-control models.
Anna Lisa Ferrara, Georg Fuchsbauer, Bogdan Warinschi
CSF2
2013 Short blind signatures
abstract
Blind signatures allow users to obtain signatures on messages hidden from the signer; moreover, the signer cannot link the resulting message/signature pair to the signing session. This paper presents blind signature schemes, in which the number of interactions between the user and the signer is min imal and whose blind signatures are short. Our schemes are defined over bilinear groups and are proved secure in the common-reference-string model without random oracles and under standard assumptions: CDH and the decision-linear assumption. (We also give variants over asymmetric groups based on similar assumptions.) The blind signatures are Waters signatures, which consist of 2 group elements. Moreover, we instantiate partially blind signatures, where the message consists of a part hidden from the signer and a commonly known public part, and schemes achieving perfect blindness. We propose new variants of blind signatures, such as signer-friendly partially blind signatures, where the public part can be chosen by the signer without prior agreement, 3-party blind signatures, as well as blind signatures on multiple aggregated messages provided by independent sources. We also extend Waters signatures to non-binary alphabets by proving a new result on the underlying hash function.
Olivier Blazy, Georg Fuchsbauer, David Pointcheval, Damien Vergnaud
J. Comput. Secur.2
2012 Plaintext-Checkable Encryption
Sébastien Canard, Georg Fuchsbauer, Aline Gouget, Fabien Laguillaumie
CT-RSA2
2011 Commuting Signatures and Verifiable Encryption
Georg Fuchsbauer
EUROCRYPT1
2010 Batch Groth-Sahai
Olivier Blazy, Georg Fuchsbauer, Malika Izabachène, Amandine Jambert, Hervé Sibert, Damien Vergnaud
ACNS2
2010 Structure-Preserving Signatures and Commitments to Group Elements
Masayuki Abe, Georg Fuchsbauer, Jens Groth, Kristiyan Haralambiev, Miyako Ohkubo
CRYPTO2
2010 Efficient Rational Secret Sharing in Standard Communication Networks
Georg Fuchsbauer, Jonathan Katz, David Naccache
TCC1
2009 Transferable Constant-Size Fair E-Cash
Georg Fuchsbauer, David Pointcheval, Damien Vergnaud
CANS1
2009 Proofs on Encrypted Values in Bilinear Groups and an Application to Anonymity of Signatures
Georg Fuchsbauer, David Pointcheval
Pairing1