Dennis Hofheinz

dblp:74/3914 · DBLP profile ↗
← Back
75ranked-venue papers
36as first author
13since 2021 · last 2026
—ORCID · none

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

Security and privacy · 73 · 36 first-author · 13 since 2021Theory of computation · 12 · 5 first-author · 3 since 2021Databases, data management, data science and information retrieval · 1
YearPublicationVenuePosition
2026 Tight Security for BBS Signatures
Rutchathon Chairattana-Apirom, Dennis Hofheinz, Stefano Tessaro
EUROCRYPT (1)2
2025 Tightly-Secure Blind Signatures in Pairing-Free Groups
abstract
We construct the first blind signature scheme that achieves all of the following properties simultaneously: The third property enables a reasonably efficient solution, and in fact signatures in our scheme comprise 10 group elements and 29 $$\mathbb {Z} _p$$ -elements. Our scheme starts from a pairing-based non-blind signature scheme (Abe et al., JoC 2023), and uses recent techniques of Chairattana-Apirom, Tessaro, and Zhu (CRYPTO 2024) to replace the pairings used in this scheme with non-interactive zero-knowledge proofs in the random oracle model. This conversion is not generic or straightforward (also because prior works have converted only significantly simpler signature schemes), and we are required to improve upon and innovate existing techniques in several places. As an interesting side note, and unlike previous works, our techniques only require a non-programmable random oracle, and our signature scheme achieves predicate blindness (which means that the user can prove statements about the signed message during the signing process).
Nicholas Brandt, Dennis Hofheinz, Michael Klooß, Michael Reichle
ASIACRYPT (6)2
2025 Malleable SNARKs and Their Applications
Suvradip Chakraborty, Dennis Hofheinz, Roman Langrehr, Jesper Buus Nielsen, Christoph Striecks, Daniele Venturi 0001
EUROCRYPT (4)2
2025 Securely Instantiating 'Half Gates' Garbling in the Standard Model
Anasuya Acharya, Karen Azari, Mirza Ahad Baig, Dennis Hofheinz, Chethan Kamath
PKC (4)4
2025 Non-interactive Key Exchange: New Notions, New Constructions, and Forward Security
Suvradip Chakraborty, Dennis Hofheinz, Roman Langrehr
PKC (2)2
2024 Identity-Based Encryption with (Almost) Tight Security in the Multi-instance, Multi-ciphertext Setting
abstract
Abstract We construct an identity-based encryption (IBE) scheme that is tightly secure in a very strong sense. Specifically, we consider a setting with many instances of the scheme and many encryptions per instance. In this setting, we reduce the security of our scheme to a variant of a simple assumption used for a similar purpose by Chen and Wee (CRYPTO 2013, Springer, 2013). The security loss of our reduction is $$\textbf{O} (k)$$ O(k) (where $$k $$ k is the security parameter). Our scheme is the first IBE scheme to achieve this strong flavor of tightness under a simple assumption. Technically, our scheme is a variation of the IBE scheme by Chen and Wee. However, in order to “lift” their results to the multi-instance, multi-ciphertext case, we need to develop new ideas. In particular, while we build on (and extend) their high-level proof strategy, we deviate significantly in the low-level proof steps.
Dennis Hofheinz, Jessica Koch, Christoph Striecks
J. Cryptol.1
2023 The Power of Undirected Rewindings for Adaptive Security
Dennis Hofheinz, Julia Kastner 0001, Karen Azari
CRYPTO (2)1
2023 Deniable Authentication When Signing Keys Leak
Suvradip Chakraborty, Dennis Hofheinz, Ueli Maurer, Guilherme Rito
EUROCRYPT (3)2
2023 Compact Structure-Preserving Signatures with Almost Tight Security
abstract
Abstract In structure-preserving cryptography, every building block shares the same bilinear groups. These groups must be generated for a specific, a priori fixed security level, and thus, it is vital that the security reduction in all involved building blocks is as tight as possible. In this work, we present the first generic construction of structure-preserving signature schemes whose reduction cost is independent of the number of signing queries. Its chosen-message security is almost tightly reduced to the chosen-plaintext security of a structure-preserving public-key encryption scheme and the security of Groth–Sahai proof system. Technically, we adapt the adaptive partitioning technique by Hofheinz (Eurocrypt 2017) to the setting of structure-preserving signature schemes. To achieve a structure-preserving scheme, our new variant of the adaptive partitioning technique relies only on generic group operations in the scheme itself. Interestingly, however, we will use non-generic operations during our security analysis. Instantiated over asymmetric bilinear groups, the security of our concrete scheme is reduced to the external Diffie–Hellman assumption with linear reduction cost in the security parameter, independently of the number of signing queries. The signatures in our schemes consist of a larger number of group elements than those in other non-tight schemes, but can be verified faster, assuming their security reduction loss is compensated by increasing the security parameter to the next standard level.
Masayuki Abe, Dennis Hofheinz, Ryo Nishimaki, Miyako Ohkubo, Jiaxin Pan 0001
J. Cryptol.2
2022 The Price of Verifiability: Lower Bounds for Verifiable Random Functions
Nicholas Brandt, Dennis Hofheinz, Julia Kastner 0001, Akin Ünal
TCC (2)2
2021 Onion Routing with Replies
Christiane Weis, Dennis Hofheinz, Andy Rupp, Thorsten Strufe
ASIACRYPT (2)2
2021 On the Impossibility of Purely Algebraic Signatures
Nico Döttling, Dominik Hartmann, Dennis Hofheinz, Eike Kiltz, Sven Schäge, Bogdan Ursu
TCC (3)3
2021 Towards Tight Adaptive Security of Non-interactive Key Exchange
Julia Hesse, Dennis Hofheinz, Lisa Kohl, Roman Langrehr
TCC (3)2
2020 On Instantiating the Algebraic Group Model from Falsifiable Assumptions
Thomas Agrikola, Dennis Hofheinz, Julia Kastner 0001
EUROCRYPT (2)2
2020 Multilinear Maps from Obfuscation
abstract
Abstract We provide constructions of multilinear groups equipped with natural hard problems from indistinguishability obfuscation, homomorphic encryption, and NIZKs. This complements known results on the constructions of indistinguishability obfuscators from multilinear maps in the reverse direction. We provide two distinct, but closely related constructions and show that multilinear analogues of the $${\text {DDH}} $$ DDH assumption hold for them. Our first construction is symmetric and comes with a $$\kappa $$ κ -linear map $$\mathbf{e }: {{\mathbb {G}}}^\kappa \longrightarrow {\mathbb {G}}_T$$ e:Gκ⟶GT for prime-order groups $${\mathbb {G}}$$ G and $${\mathbb {G}}_T$$ GT . To establish the hardness of the $$\kappa $$ κ -linear $${\text {DDH}} $$ DDH problem, we rely on the existence of a base group for which the $$\kappa $$ κ -strong $${\text {DDH}} $$ DDH assumption holds. Our second construction is for the asymmetric setting, where $$\mathbf{e }: {\mathbb {G}}_1 \times \cdots \times {\mathbb {G}}_{\kappa } \longrightarrow {\mathbb {G}}_T$$ e:G1×⋯×Gκ⟶GT for a collection of $$\kappa +1$$ κ+1 prime-order groups $${\mathbb {G}}_i$$ Gi and $${\mathbb {G}}_T$$ GT , and relies only on the 1-strong $${\text {DDH}} $$ DDH assumption in its base group. In both constructions, the linearity $$\kappa $$ κ can be set to any arbitrary but a priori fixed polynomial value in the security parameter. We rely on a number of powerful tools in our constructions: probabilistic indistinguishability obfuscation, dual-mode NIZK proof systems (with perfect soundness, witness-indistinguishability, and zero knowledge), and additively homomorphic encryption for the group $$\mathbb {Z}_N^{+}$$ ZN+ . At a high level, we enable “bootstrapping” multilinear assumptions from their simpler counterparts in standard cryptographic groups and show the equivalence of PIO and multilinear maps under the existence of the aforementioned primitives.
Martin R. Albrecht, Pooya Farshim, Shuai Han 0001, Dennis Hofheinz, Enrique Larraia, Kenneth G. Paterson
J. Cryptol.4
2019 Dual-Mode NIZKs from Obfuscation
Dennis Hofheinz, Bogdan Ursu
ASIACRYPT (1)1
2019 Designated-Verifier Pseudorandom Generators, and Their Applications
Geoffroy Couteau, Dennis Hofheinz
EUROCRYPT (2)2
2018 Identity-Based Encryption Tightly Secure Under Chosen-Ciphertext Attacks
Dennis Hofheinz, Dingding Jia, Jiaxin Pan 0001
ASIACRYPT (2)1
2018 On Tightly Secure Non-Interactive Key Exchange
Julia Hesse, Dennis Hofheinz, Lisa Kohl
CRYPTO (2)2
2018 More Efficient (Almost) Tightly Secure Structure-Preserving Signatures
Romain Gay, Dennis Hofheinz, Lisa Kohl, Jiaxin Pan 0001
EUROCRYPT (2)2
2018 On the (Im-)Possibility of Extending Coin Toss
abstract
We consider the task of extending a given coin toss. By this, we mean the two-party task of using a single instance of a given coin toss protocol in order to interactively generate more random coins. A bit more formally, our goal is to generate n common random coins from a single use of an ideal functionality that gives $$m
Dennis Hofheinz, Jörn Müller-Quade, Dominique Unruh
J. Cryptol.1
2017 Compact Structure-Preserving Signatures with Almost Tight Security
Masayuki Abe, Dennis Hofheinz, Ryo Nishimaki, Miyako Ohkubo, Jiaxin Pan 0001
CRYPTO (2)2
2017 Kurosawa-Desmedt Meets Tight Security
Romain Gay, Dennis Hofheinz, Lisa Kohl
CRYPTO (3)2
2017 Adaptive Partitioning
Dennis Hofheinz
EUROCRYPT (3)1
2017 A Modular Analysis of the Fujisaki-Okamoto Transformation
Dennis Hofheinz, Kathrin Hövelmanns, Eike Kiltz
TCC (1)1
2016 How to Generate and Use Universal Samplers
Dennis Hofheinz, Tibor Jager, Dakshita Khurana, Amit Sahai, Brent Waters, Mark Zhandry
ASIACRYPT (2)1
2016 Tightly CCA-Secure Encryption Without Pairings
Romain Gay, Dennis Hofheinz, Eike Kiltz, Hoeteck Wee
EUROCRYPT (1)2
2016 Tightly secure signatures and public-key encryption
Dennis Hofheinz, Tibor Jager
Des. Codes Cryptogr.1
2015 Idealizing Identity-Based Encryption
Dennis Hofheinz, Christian Matt 0002, Ueli Maurer
ASIACRYPT (1)1
2015 Tightly-Secure Authenticated Key Exchange
Christoph Bader, Dennis Hofheinz, Tibor Jager, Eike Kiltz, Yong Li 0021
TCC (1)2
2015 Subtleties in the Definition of IND-CCA: When and How Should Challenge Decryption Be Disallowed?
Mihir Bellare, Dennis Hofheinz, Eike Kiltz
J. Cryptol.2
2015 Confined Guessing: New Signatures From Standard Assumptions
Florian Böhl, Dennis Hofheinz, Tibor Jager, Jessica Koch, Christoph Striecks
J. Cryptol.2
2015 GNUC: A New Universal Composability Framework
Dennis Hofheinz, Victor Shoup
J. Cryptol.1
2014 Polynomial Spaces: A New Framework for Composite-to-Prime-Order Transformations
Gottfried Herold, Julia Hesse, Dennis Hofheinz, Carla Ràfols, Andy Rupp
CRYPTO (1)3
2014 A Generic View on Trace-and-Revoke Broadcast Encryption Schemes
Dennis Hofheinz, Christoph Striecks
CT-RSA1
2014 Standard versus Selective Opening Security: Separation and Equivalence Results
Dennis Hofheinz, Andy Rupp
TCC1
2013 Programmable Hash Functions in the Multilinear Setting
Eduarda S. V. Freire 0001, Dennis Hofheinz, Kenneth G. Paterson, Christoph Striecks
CRYPTO (1)2
2013 Practical Signatures from Standard Assumptions
Florian Böhl, Dennis Hofheinz, Tibor Jager, Jessica Koch, Jae Hong Seo, Christoph Striecks
EUROCRYPT2
2013 Circular Chosen-Ciphertext Security with Compact Ciphertexts
Dennis Hofheinz
EUROCRYPT1
2013 Practical Chosen Ciphertext Secure Encryption from Factoring
Dennis Hofheinz, Eike Kiltz, Victor Shoup
J. Cryptol.1
2013 Polynomial Runtime and Composability
Dennis Hofheinz, Dominique Unruh, Jörn Müller-Quade
J. Cryptol.1
2012 Tightly Secure Signatures and Public-Key Encryption
Dennis Hofheinz, Tibor Jager
CRYPTO1
2012 All-But-Many Lossy Trapdoor Functions
Dennis Hofheinz
EUROCRYPT1
2012 Bonsai Trees, or How to Delegate a Lattice Basis
David Cash, Dennis Hofheinz, Eike Kiltz, Chris Peikert
J. Cryptol.2
2012 Programmable Hash Functions and Their Applications
Dennis Hofheinz, Eike Kiltz
J. Cryptol.1
2011 Short Signatures from Weaker Assumptions
Dennis Hofheinz, Tibor Jager, Eike Kiltz
ASIACRYPT1
2011 Possibility and Impossibility Results for Selective Decommitments
Dennis Hofheinz
J. Cryptol.1
2010 Bounded Key-Dependent Message Security
Boaz Barak, Iftach Haitner, Dennis Hofheinz, Yuval Ishai
EUROCRYPT3
2010 Bonsai Trees, or How to Delegate a Lattice Basis
David Cash, Dennis Hofheinz, Eike Kiltz, Chris Peikert
EUROCRYPT2
2010 Encryption Schemes Secure against Chosen-Ciphertext Selective Opening Attacks
Serge Fehr, Dennis Hofheinz, Eike Kiltz, Hoeteck Wee
EUROCRYPT2
2010 A Twist on the Naor-Yung Paradigm and Its Application to Efficient CCA-Secure Encryption from Hard Search Problems
Ronald Cramer, Dennis Hofheinz, Eike Kiltz
TCC2
2010 Some (in)sufficient conditions for secure hybrid encryption
Javier Herranz, Dennis Hofheinz, Eike Kiltz
Inf. Comput.2
2010 Obfuscation for Cryptographic Purposes
Dennis Hofheinz, John Malone-Lee, Martijn Stam
J. Cryptol.1
2009 CoSP: a general framework for computational soundness proofs
abstract
We describe CoSP, a general framework for conducting computational soundness proofs of symbolic models and for embedding these proofs into formal calculi. CoSP considers arbitrary equational theories and computational implementations, and it abstracts away many details that are not crucial for proving computational soundness, such as message scheduling, corruption models, and even the internal structure of a protocol. CoSP enables soundness results, in the sense of preservation of trace properties, to be proven in a conceptually modular and generic way: proving x cryptographic primitives sound for y calculi only requires x + y proofs (instead of x • y proofs without this framework), and the process of embedding calculi is conceptually decoupled from computational soundness proofs of cryptographic primitives. We exemplify the usefulness of CoSP by proving the first computational soundness result for the full-fledged applied π-calculus under active attacks. Concretely, we embed the applied π-calculus into CoSP and give a sound implementation of public-key encryption and digital signatures.
Michael Backes 0001, Dennis Hofheinz, Dominique Unruh
CCS2
2009 The Group of Signed Quadratic Residues and Applications
Dennis Hofheinz, Eike Kiltz
CRYPTO1
2009 Possibility and Impossibility Results for Encryption and Commitment Secure under Selective Opening
Mihir Bellare, Dennis Hofheinz, Scott Yilek
EUROCRYPT2
2009 Practical Chosen Ciphertext Secure Encryption from Factoring
Dennis Hofheinz, Eike Kiltz
EUROCRYPT1
2009 The Kurosawa-Desmedt key encapsulation is not chosen-ciphertext secure
Seung Geol Choi, Javier Herranz, Dennis Hofheinz, Jung Yeon Hwang, Eike Kiltz, Dong Hoon Lee 0001, Moti Yung
Inf. Process. Lett.3
2009 Polynomial runtime in simulatability definitions
abstract
We elaborate on the problem of polynomial runtime in simulatability definitions for multi-party computation. First, the need for a new definition is demonstrated by showing which problems occur with common definitions of polynomial runtime. Then, we give a definition which captures in an intuitive manner what it means for a protocol or an adversary to have polynomial runtime. We show that this notion is suitable for simulatability definitions for multi-party computation. In particular, a composition theorem is shown for this notion.
Dennis Hofheinz, Jörn Müller-Quade, Dominique Unruh
J. Comput. Secur.1
2008 Programmable Hash Functions and Their Applications
Dennis Hofheinz, Eike Kiltz
CRYPTO1
2008 Public-Key Encryption with Non-interactive Opening
Ivan Damgård, Dennis Hofheinz, Eike Kiltz, Rune Thorbek
CT-RSA2
2008 Towards Key-Dependent Message Security in the Standard Model
Dennis Hofheinz, Dominique Unruh
EUROCRYPT1
2007 Bounded CCA2-Secure Encryption
Ronald Cramer, Goichiro Hanaoka, Dennis Hofheinz, Hideki Imai, Eike Kiltz, Rafael Pass, Abhi Shelat, Vinod Vaikuntanathan
ASIACRYPT3
2007 Secure Hybrid Encryption from Weakened Key Encapsulation
Dennis Hofheinz, Eike Kiltz
CRYPTO1
2007 Obfuscation for Cryptographic Purposes
Dennis Hofheinz, John Malone-Lee, Martijn Stam
TCC1
2006 Conditional Reactive Simulatability
Michael Backes 0001, Markus Dürmuth, Dennis Hofheinz, Ralf Küsters
ESORICS3
2006 On the (Im-)Possibility of Extending Coin Toss
Dennis Hofheinz, Jörn Müller-Quade, Dominique Unruh
EUROCRYPT1
2006 Simulatable Security and Polynomially Bounded Concurrent Composability
abstract
Simulatable security is a security notion for multi-party protocols that implies strong composability features. The main definitional flavours of simulatable security are standard simulatability, universal simulatability, and black-box simulatability. All three come in "computational," "statistical" and "perfect" subflavours indicating the considered adversarial power. Universal and black-box simulatability, in all of their subflavours, are already known to guarantee that the concurrent composition even of a polynomial number of secure protocols stays secure. We show that computational standard simulatability does not allow for secure concurrent composition of polynomially many protocols, but we also show that statistical standard simulatability does. The first result assumes the existence of an interesting cryptographic tool (namely time-lock puzzles), and its proof employs a cryptographic multi-party computation in an interesting and unconventional way
Dennis Hofheinz, Dominique Unruh
S&P1
2005 Polynomial Runtime in Simulatability Definitions
abstract
We elaborate on the problem of polynomial runtime in simulatability definitions for multiparty computation. First, the need for a new definition is demonstrated by showing which problems occur with common definitions of polynomial runtime. Then, we give a definition which captures in an intuitive manner what it means for a protocol or an adversary to have polynomial runtime. We show that this notion is suitable for simulatability definitions for multiparty computation. In particular, a composition theorem is shown for this notion.
Dennis Hofheinz, Jörn Müller-Quade, Dominique Unruh
CSFW1
2005 On the Notion of Statistical Security in Simulatability Definitions
Dennis Hofheinz, Dominique Unruh
ISC1
2005 Comparing Two Notions of Simulatability
Dennis Hofheinz, Dominique Unruh
TCC1
2004 How to Break and Repair a Universally Composable Signature Functionality
Michael Backes 0001, Dennis Hofheinz
ISC2
2004 Universally Composable Commitments Using Random Oracles
Dennis Hofheinz, Jörn Müller-Quade
TCC1
2004 On the Security of Two Public Key Cryptosystems Using Non-Abelian Groups
María Isabel González Vasco, Dennis Hofheinz, Consuelo Martínez, Rainer Steinwandt
Des. Codes Cryptogr.2
2003 Initiator-Resilient Universally Composable Key Exchange
Dennis Hofheinz, Jörn Müller-Quade, Rainer Steinwandt
ESORICS1