collaborators

7 papers

quant-ph2025

The Quantum Multiple-Access Channel with Cribbing Encoders

Uzi Pereg, Christian Deppe, Holger Boche

Communication over a quantum multiple-access channel (MAC) with cribbing encoders is considered, whereby Transmitter 2 performs a measurement on a system that is entangled with Tra…

cs.IT2025

Deterministic identification over channels with finite output: a dimensional perspective on superlinear rates

Pau Colomer, Christian Deppe, Holger Boche +1

Following initial work by JaJa, Ahlswede and Cai, and inspired by a recent renewed surge in interest in deterministic identification (DI) via noisy channels, we consider the proble…

cs.IT2025

Deterministic Identification Codes for Fading Channels

Ilya Vorobyev, Christian Deppe, Holger Boche

Many communication applications incorporate event-triggered behavior, where the conventional Shannon capacity may not effectively gauge performance. Consequently, we advocate for t…

cs.IT2025

Joint Identification and Sensing for Discrete Memoryless Channels

Wafa Labidi, Yaning Zhao, Christian Deppe +1

In the identification (ID) scheme proposed by Ahlswede and Dueck, the receiver's goal is simply to verify whether a specific message of interest was sent. Unlike Shannon's transmis…

quant-ph2024

The Multiple-Access Channel with Entangled Transmitters

Uzi Pereg, Christian Deppe, Holger Boche

Communication over a classical multiple-access channel (MAC) with entanglement resources is considered, whereby two transmitters share entanglement resources a priori before commun…

quant-ph2024

Existential Unforgeability in Quantum Authentication From Quantum Physical Unclonable Functions Based on Random von Neumann Measurement

Soham Ghosh, Vladlen Galetsky, Pol Juliá Farré +3

Physical Unclonable Functions (PUFs) leverage inherent, non-clonable physical randomness to generate unique input-output pairs, serving as secure fingerprints for cryptographic pro…