EDBT 2026 Demo / reviewers in the wild / expert
Alessandro Tomasi 0001
dblp:69/1330
· DBLP profile ↗
7ranked-venue papers
0as first author
5since 2021 · last 2025
0000-0002-3518-9400ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 5 · 5 since 2021Systems, architecture and hardware · 1Graphics, computer vision, multimedia, augmented reality and games · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Comparison of Credential Status Mechanisms for the Digital Wallet Ecosystem
Riccardo Germenia, Salvatore Manfredi, Giada Sciarretta, Mario Scuro, Alessandro Tomasi 0001 |
SECRYPT | 5 |
| 2024 | Modeling and Assessing Coercion Threats in Electronic Voting
Riccardo Longo, Majid Mollaeefar, Umberto Morelli, Chiara Spadafora, Alessandro Tomasi 0001, Silvio Ranise |
CRiSIS | 5 |
| 2024 | Automating Compliance for Improving TLS Security Postures: An Assessment of Public Administration Endpoints
Riccardo Germenia, Salvatore Manfredi, Matteo Rizzi, Giada Sciarretta, Alessandro Tomasi 0001, Silvio Ranise |
SECRYPT | 5 |
| 2024 | On cryptographic mechanisms for the selective disclosure of verifiable credentialsabstractVerifiable credentials are a digital analogue of physical credentials. Their authenticity and integrity are protected by means of cryptographic techniques, and they can be presented to verifiers to reveal attributes or even predicates about the attributes included in the credential. One way to preserve privacy during presentation consists in selectively disclosing the attributes in a credential. In this paper we present the most widespread cryptographic mechanisms used to enable selective disclosure of attributes identifying two categories: the ones based on hiding commitments - e.g., mdl ISO/IEC 18013-5 - and the ones based on non-interactive zero-knowledge proofs - e.g., BBS signatures. We also include a description of the cryptographic primitives used to design such cryptographic mechanisms. We describe the design of the cryptographic mechanisms and compare them by performing an analysis on their standard maturity in terms of standardization, cryptographic agility and quantum safety, then we compare the features that they support with main focus on the unlinkability of presentations, the ability to create predicate proofs and support for threshold credential issuance. Finally we perform an experimental evaluation based on the Rust open source implementations that we have considered most relevant. In particular we evaluate the size of credentials and presentations built using different cryptographic mechanisms and the time needed to generate and verify them. We also highlight some trade-offs that must be considered in the instantiation of the cryptographic mechanisms. Andrea Flamini, Giada Sciarretta, Mario Scuro, Amir Sharif, Alessandro Tomasi 0001, Silvio Ranise |
J. Inf. Secur. Appl. | 5 |
| 2023 | A First Appraisal of Cryptographic Mechanisms for the Selective Disclosure of Verifiable Credentials
Andrea Flamini, Silvio Ranise, Giada Sciarretta, Mario Scuro, Amir Sharif, Alessandro Tomasi 0001 |
SECRYPT | 6 |
| 2019 | A SPAD-based random number generator pixel based on the arrival time of photons
Hesong Xu, Nicola Massari, Leonardo Gasparini, Alessio Meneghetti, Alessandro Tomasi 0001 |
Integr. | 5 |
| 2009 | Color Image Segmentation by the Vector-Valued Allen-Cahn Phase-Field Model: A Multigrid SolutionabstractWe present an efficient numerical solution of a PDE-driven model for color image segmentation and give numerical examples of the results. The method combines the vector-valued Allen-Cahn phase field equation with initial data fitting terms with prescribed interface width and fidelity constants. Efficient numerical solution is achieved using a multigrid splitting of a finite element space, thereby producing an efficient and robust method for the segmentation of large images. We also present the use of adaptive mesh refinement to further speed up the segmentation process. David A. Kay, Alessandro Tomasi 0001 |
IEEE Trans. Image Process. | 2 |