Miha Stopar

dblp:40/10256 · DBLP profile ↗
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8ranked-venue papers
1as first author
4since 2021 · last 2025
0000-0002-4642-6280ORCID · corroborated

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

Security and privacy · 6 · 4 since 2021Systems, architecture and hardware · 1
YearPublicationVenuePosition
2025 LIT-SiGamal: An Efficient Isogeny-Based PKE Based on a LIT Diagram
Tomoki Moriya, Miha Stopar
ASIACRYPT (4)2
2025 Radical 2-Isogenies and Cryptographic Hash Functions in Dimensions 1, 2 and 3
Sabrina Kunzweiler, Luciano Maino, Tomoki Moriya, Christophe Petit 0001, Giacomo Pope, Damien Robert 0001, Miha Stopar, Yan Bo Ti
PKC (3)7
2024 Improved Algorithms for Finding Fixed-Degree Isogenies Between Supersingular Elliptic Curves
Benjamin Bencina, Péter Kutas, Simon-Philipp Merz, Christophe Petit 0001, Miha Stopar, Charlotte Weitkämper
CRYPTO (5)5
2021 Privacy-Preserving eID Derivation to Self-Sovereign Identity Systems with Offline Revocation
abstract
Digital identities play a vital role in an increasingly digital world. These identities often rely on central authorities to issue and manage them. Central authorities have the drawback of being a central trusted party, representing a bottleneck and single point of failure with exclusive control of identity-related data. Self-sovereign identity (SSI) tackles those problems by utilizing distributed ledger technology and making users the sovereign owners of their identity data. Nevertheless, SSI, as recent technology, still lacks qualified identity data. This is especially a problem since sensitive services like eGovernment or banking services require identity data issued by a qualified identity provider; thus, SSI - based identities cannot be used for these services. In this paper, we propose a concept for deriving identity data from an existing identity system into an SSI in a fully privacy-preserving way by additionally supporting offline verification. This way, we enable a chain of trust from the existing identity system to the SSI system by introducing a novel trust model. Our concept utilizes novel cryptographic primitives to support efficient and privacy-preserving identity showing as well as revo-cation. To underline the feasibility of our concept, we implement a proof system and benchmark the related use cases.
Andreas Abraham, Karl W. Koch, Stefan More, Sebastian Ramacher, Miha Stopar
TrustCom5
2019 Privacy-Enhanced Machine Learning with Functional Encryption
Tilen Marc, Miha Stopar, Jan Hartman, Manca Bizjak, Jolanda Modic
ESORICS (1)2
2017 A novel approach to manage cloud security SLA incidents
Rubén Trapero, Jolanda Modic, Miha Stopar, Ahmed Taha 0002, Neeraj Suri
Future Gener. Comput. Syst.3
2016 Towards a Proof-based SLA Management Framework - The SPECS Approach
abstract
We present a framework that allows monitoring of the cloud-based applications and environments to verify fulfilment of Service Level Agreements (SLAs), to analyse and remediate detectable security breaches that compromise the validity of SLAs related to storage services. In particular, we describe a system to facilitate identification of the root cause of each violation of integrity, write-serializability and read-freshness properties. Such a system enables executing remediation actions specifically planned for detectable security incidents. The system is activated in an automated way on top of storage services, according to an SLA, which can be negotiated with customers.
Miha Stopar, Jolanda Modic, Dana Petcu, Massimiliano Rak
CLOSER (2)1
2016 Novel efficient techniques for real-time cloud security assessment
Jolanda Modic, Rubén Trapero, Ahmed Taha 0002, Jesus Luna, Miha Stopar, Neeraj Suri
Comput. Secur.5