most citedThe Computational and Latency Advantage of Quantum Communication Networks

27 citations · 42 across the 2 of their papers we have counts for

collaborators

5 papers

quant-ph202115 cited

Integrating Quantum Simulation for Quantum-Enhanced Classical Network Emulation

Stephen DiAdamo, Janis Nötzel, Simon Sekavčnik +5

We describe a method of investigating the near-term potential of quantum communication technology for communication networks from the perspective of current networks. For this, we…

cs.IT202127 cited

The Computational and Latency Advantage of Quantum Communication Networks

Roberto Ferrara, Riccardo Bassoli, Christian Deppe +2

This article summarises the current status of classical communication networks and identifies some critical open research challenges that can only be solved by leveraging quantum t…

quant-ph2021

Key Assistance, Key Agreement, and Layered Secrecy for Bosonic Broadcast Channels

Uzi Pereg, Roberto Ferrara, Matthieu R. Bloch

Secret-sharing building blocks based on quantum broadcast communication are studied. The confidential capacity region of the pure-loss bosonic broadcast channel is determined, both…

cs.IT2020

Performance Analysis of Identification Codes

Sencer Derebeyoglu, Christian Deppe, Roberto Ferrara

In this paper we analyse the construction of identification codes. Identification codes are based on the question "Is the message I have just received the one I am interested in?",…

quant-ph2020

Upper bounds on device-independent quantum key distribution

Matthias Christandl, Roberto Ferrara, Karol Horodecki

Quantum key distribution (QKD) is a method that distributes a secret key to a sender and a receiver by the transmission of quantum particles (e.g. photons). Device-independent quan…