Built with and by Teycir Ben Soltane•
How to Use•FAQ•GitHub•arXiv.org•
Share:
ArXivCSExplorer
☆☆Bookmarks🏆RSSHow to UseFAQ
Home/Authors/Thomas Lornser

Thomas Lornser

3 indexed papers

Recent (6 mo)
3
With code
0
Influential cites
0
Benchmarked
0

Publications per year

3
26

Top categories

Crypto×3Quantum Physics×2Neural Computing×1

Frequent co-authors

Thomas Lorünser3×
Florian Wohner2×
Stephan Krenn2×
Sebastian Gruber1×
Tobias Harzfeld1×
Christoph G. Schuetz1×

Research Timeline

2026
Topology-Hiding Connectivity-Assurance for QKD Inter-Networking

The paper introduces a topology-hiding connectivity assurance protocol that allows network providers to cryptographically prove the existence of a secure connection in QKD networks without revealing the internal network structure.

Topology-Hiding Path Validation for Large-Scale Quantum Key Distribution Networks

The paper proposes a provably secure path validation protocol for large-scale Quantum Key Distribution (QKD) networks that allows receivers to verify network compliance without revealing sensitive topological information to users.

Privacy-Preserving Distributed Optimization Under Time Constraints Using Secure Multi-Party Computation and Evolutionary Algorithms

The paper proposes a novel framework combining evolutionary algorithms and Secure Multi-Party Computation (MPC) to enable privacy-preserving distributed optimization that meets strict time deadlines.

Highlighted terms show continued research focus across papers

Papers

cs.NEcs.CRRecentMay 20, 2026

Privacy-Preserving Distributed Optimization Under Time Constraints Using Secure Multi-Party Computation and Evolutionary Algorithms

Sebastian Gruber, Tobias Harzfeld, Christoph G. Schuetz, Florian Wohner +1 more

The paper proposes a novel framework combining evolutionary algorithms and Secure Multi-Party Computation (MPC) to enable privacy-preserving distributed optimization that meets strict time deadlines.

View →
cs.CRquant-phRecentApr 2, 2026

Topology-Hiding Connectivity-Assurance for QKD Inter-Networking

Margherita Cozzolino, Stephan Krenn, Thomas Lorünser

The paper introduces a topology-hiding connectivity assurance protocol that allows network providers to cryptographically prove the existence of a secure connection in QKD networks without revealing t…

View →
quant-phcs.CRRecentApr 2, 2026

Topology-Hiding Path Validation for Large-Scale Quantum Key Distribution Networks

Stephan Krenn, Omid Mir, Thomas Lorünser, Sebastian Ramacher +1 more

The paper proposes a provably secure path validation protocol for large-scale Quantum Key Distribution (QKD) networks that allows receivers to verify network compliance without revealing sensitive top…

View →