Mohammadamin Rakeei

dblp:325/4824 · DBLP profile ↗
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3ranked-venue papers
0as first author
3since 2021 · last 2026
0000-0002-0015-7978ORCID · corroborated

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Security and privacy · 3 · 3 since 2021
YearPublicationVenuePosition
2026 Secure authentication and traceability of physical objects
Mónica P. Arenas, Gabriele Lenzini, Mohammadamin Rakeei, Peter Y. A. Ryan, Marjan Skrobot, Maria Zhekova
Comput. Secur.3
2025 Remote secure object authentication: Secure sketches, fuzzy extractors, and security protocols
abstract
Coating objects with microscopic droplets of liquid crystals makes it possible to identify and authenticate objects as if they had biometric-like features: this is extremely valuable as an anti-counterfeiting measure. How to extract features from images has been studied elsewhere, but exchanging data about features is not enough if we wish to build secure cryptographic authentication protocols . What we need are authentication tokens (i.e., bitstrings), strategies to cope with noise, always present when processing images , and solutions to protect the original features so that it is impossible to reproduce them from the tokens. Secure sketches and fuzzy extractors are the cryptographic toolkits that offer these functionalities, but they must be instantiated to work with the peculiar specific features extracted from images of liquid crystals. We show how this can work and how we can obtain uniform, error-tolerant, and random strings, and how they are used to authenticate liquid crystal coated objects. Our protocol reminds an existing biometric-based protocol, but only apparently. Using the original protocol as-it-is would make the process vulnerable to an attack that exploits certain physical peculiarities of our liquid crystal coatings. Instead, our protocol is robust against the attack. We prove all our security claims formally, by modeling and verifying in Proverif, our protocol and its cryptographic schemes. We implement and benchmark our solution, measuring both the performance and the quality of authentication .
Mónica P. Arenas, Georgios Fotiadis, Gabriele Lenzini, Mohammadamin Rakeei
Comput. Secur.4
2024 Verifying Artifact Authenticity with Unclonable Optical Tags
abstract
peer reviewed
Mónica P. Arenas, Gabriele Lenzini, Mohammadamin Rakeei, Peter Y. A. Ryan, Marjan Skrobot, Maria Zhekova
SECRYPT3