Angelo De Caro

dblp:04/7967 · DBLP profile ↗
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15ranked-venue papers
7as first author
4since 2021 · last 2026
0009-0009-8284-5632ORCID · verified

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Security and privacy · 12 · 6 first-author · 4 since 2021Systems, architecture and hardware · 1Computer networks · 1 · 1 first-authorSoftware engineering, systems software and programming languages · 1Applied, interdisciplinary, general and emerging computing · 1
YearPublicationVenuePosition
2026 Efficient Aggregate Anonymous Credentials for Decentralized Identity
Rebekah Mercer, Kaoutar Elkhiyaoui, Angelo De Caro, Elli Androulaki
ACNS (2)3
2026 Distributed Broadcast Encryption for Confidential Interoperability across Private Blockchains
Angelo De Caro, Kaoutar Elkhiyaoui, Sandeep Nishad, Sikhar Patranabis, Venkatraman Ramakrishna
NDSS1
2023 Short Privacy-Preserving Proofs of Liabilities
abstract
In the wake of fraud scandals involving decentralized exchanges and the significant financial loss suffered by individuals, regulators are pressed to put mechanisms in place that enforce customer protections and capital requirements in decentralized ecosystems. Proof of liabilities (PoL) is such a mechanism: it allows a prover (e.g., an exchange) to prove its liability to a verifier (i.e., a customer).
Francesca Falzon, Kaoutar Elkhiyaoui, Yacov Manevich, Angelo De Caro
CCS4
2021 Anonymous Transactions with Revocation and Auditing in Hyperledger Fabric
Dmytro Bogatov, Angelo De Caro, Kaoutar Elkhiyaoui, Björn Tackmann
CANS2
2020 Privacy-preserving auditable token payments in a permissioned blockchain system
abstract
Token payment systems were the first application of blockchain technology and are still the most widely used one. Early implementations of such systems, like Bitcoin or Ethereum, provide virtually no privacy beyond basic pseudonymity: all transactions are written in plain to the blockchain, which makes them linkable and traceable.
Elli Androulaki, Jan Camenisch, Angelo De Caro, Maria Dubovitskaya, Kaoutar Elkhiyaoui, Björn Tackmann
AFT3
2018 Channels: Horizontal Scaling and Confidentiality on Permissioned Blockchains
Elli Androulaki, Christian Cachin, Angelo De Caro, Eleftherios Kokoris-Kogias
ESORICS (1)3
2018 Hyperledger fabric: a distributed operating system for permissioned blockchains
abstract
Fabric is a modular and extensible open-source system for deploying and operating permissioned blockchains and one of the Hyperledger projects hosted by the Linux Foundation (www.hyperledger.org).
Elli Androulaki, Artem Barger, Vita Bortnikov, Christian Cachin, Konstantinos Christidis, Angelo De Caro, David Enyeart, Christopher Ferris, Gennady Laventman, Yacov Manevich, Srinivasan Muralidharan, Chet Murthy, Manish Sethi, Gari Singh, Keith Smith, Alessandro Sorniotti, Chrysoula Stathakopoulou, Marko Vukolic, Sharon Weed Cocco, Jason Yellick
EuroSys6
2018 Receiver- and sender-deniable functional encryption
abstract
Deniable encryption, first introduced by Canetti et al . 1997, allows equivocation of encrypted communication. In this work, the authors generalise its study to functional encryption (FE). The authors’ results are summarised as follows: They first put forward and motivate the concept of receiver‐deniable FE, for which they consider two models. In the first model, as previously considered by O'Neill et al . 2011 in the case of identity‐based encryption, a receiver gets assistance from the master authority to generate a fake secret key. In the second model, there are ‘normal’ and ‘deniable’ secret keys, and a receiver in possession of a deniable secret key can produce a fake but authentic‐looking normal key on its own. In the first model, they show a compiler from any FE scheme for circuits to a FE scheme having receiver deniability. In addition, they show an efficient receiver‐deniable FE scheme for Boolean formulae from bilinear maps. In the second (multi‐distributional) model, they present a specific FE scheme for circuits having receiver deniability. To the authors’ knowledge, a scheme in the multi‐distributional model was not previously known even for the special case of identity‐based encryption. Finally, they construct the first sender (non‐multi‐distributional) deniable FE scheme.
Angelo De Caro, Vincenzo Iovino, Adam O'Neill
IET Inf. Secur.1
2017 On the power of rewinding simulators in functional encryption
Angelo De Caro, Vincenzo Iovino
Des. Codes Cryptogr.1
2013 On the Achievability of Simulation-Based Security for Functional Encryption
Angelo De Caro, Vincenzo Iovino, Abhishek Jain 0002, Adam O'Neill, Omer Paneth, Giuseppe Persiano
CRYPTO (2)1
2013 Certified Information Access
Carlo Blundo, Angelo De Caro, Clemente Galdi, Giuseppe Persiano
J. Syst. Softw.2
2012 Fully Secure Hidden Vector Encryption
Angelo De Caro, Vincenzo Iovino, Giuseppe Persiano
Pairing1
2012 Generalized Key Delegation for Wildcarded Identity-Based and Inner-Product Encryption
abstract
Inspired by the fact that many e-mail addresses correspond to groups of users, Abdalla introduced the notion of identity-based encryption with wildcards (WIBE), which allows a sender to simultaneously encrypt messages to a group of users matching a certain pattern, defined as a sequence of identity strings and wildcards. This notion was later generalized by Abdalla, Kiltz, and Neven, who considered more general delegation patterns during the key derivation process. Despite its many applications, current constructions have two significant limitations: 1) they are only known to be fully secure when the maximum hierarchy depth is a constant; and 2) they do not hide the pattern associated with the ciphertext. To overcome these, this paper offers two new constructions. First, we show how to convert a WIBE scheme of Abdalla into a (nonanonymous) WIBE scheme with generalized key delegation (WW-IBE) that is fully secure even for polynomially many levels. Then, to achieve anonymity, we initially consider hierarchical predicate encryption (HPE) schemes with more generalized forms of key delegation and use them to construct an anonymous WW-IBE scheme. Finally, to instantiate the former, we modify the HPE scheme of Lewko to allow for more general key delegation patterns. Our proofs are in the standard model and use existing complexity assumptions.
Michel Abdalla, Angelo De Caro, Duong Hieu Phan
IEEE Trans. Inf. Forensics Secur.2
2011 jPBC: Java pairing based cryptography
abstract
It has been recently discovered that some cyclic groups that could be used in Cryptography admit a special bilinear pairing map that introduces extra structure to the group. Bilinear pairing maps were first used to break cryptosystems (see, for example, ) and later it was realized that the extra structure could be exploited to build cryptosystems with extra properties. Boneh and Franklins identity-based encryption scheme is the most famous early example of what could be achieved using bilinear maps. After that, a plethora of cryptosystems have been designed using bilinear maps. No full and freely available implementation of pairing based cryptography was available until this work. Recent proposals fall short of this goal as either their source code is not available or because they support a limited range of elliptic curve. Moreover, neither one of implements preprocessing that is crucial to reduce the computation time. In this work, we present jPBC a Java port of the PBC library written in C. jPBC provides a full ecosystem of interfaces and classes to simplify the use of the bilinear maps even for a non-cryptographer. jPBC supports different types of elliptic curves, preprocessing which can speedup the computation significantly and it is ready for the mobile world. Moreover a benchmark comparison between jPBC and PBC has been performed to measure the gap between the two libraries. Furthermore jPBC has been benchmarked on different Android mobile platforms.
Angelo De Caro, Vincenzo Iovino
ISCC1
2010 Fully Secure Anonymous HIBE and Secret-Key Anonymous IBE with Short Ciphertexts
Angelo De Caro, Vincenzo Iovino, Giuseppe Persiano
Pairing1