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From the 2 of 120 linked papers with an AI index.

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20242026
most cited1Q: First-Generation Wireless Systems Integrating Classical and Quantum Communication

5 citations · 11 across the 37 of their papers we have counts for

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quant-ph2026

Latency-Constrained Encoded Quantum Teleportation with Punctured Codes

Mahmoud Saad Abouamer, Jakob Kaltoft Søndergaard, Petar Popovski

Quantum teleportation is a key protocol for transmitting quantum information using entanglement and classical communication. Its reliability is constrained by both the availability…

quant-ph2026

Quantum Compression for Distributed Entanglement

Jan Østergaard, Shashi Raj Pandey, Christophe Biscio +2

We study compression strategies for multipartite entanglement distribution under uncertainty in the partitioning of the quantum state. When the partition is not known at the time o…

quant-ph2026

Temporal Framework for Causality-Preserving Scheduling of Measurements in Quantum Networks

Jakob Kaltoft Søndergaard, René Bødker Christensen, Petar Popovski

Distributed quantum protocols rely on classical feedforward information to process measurement outcomes, but heterogeneous hardware and uncertain local timing can make the causal o…

quant-ph2026

Resource-Adaptive Teleportation Under Imperfect Entanglement: A Code-Puncturing Framework

Mahmoud Saad Abouamer, Jaron Skovsted Gundersen, Søren Pilegaard Rasmussen +1

Quantum teleportation is a foundational protocol for sending quantum information through entanglement distribution and classical communication. Assuming ideal classical communicati…

quant-ph2025

Deflating quantum error-correcting codes

Jaron Skovsted Gundersen, Rene Bødker Christensen, Petar Popovski +1

In this work, we introduce a technique for reducing the length of a quantum stabilizer code, and we call this deflation of the code. Deflation can be seen as a generalization of th…

quant-ph2025

Sequential Entanglement-Swapping assisted by Quantum Protocol over Ethernet Networks

Kun Chen-Hu, Kristian S. Jensen, Petar Popovski

The integration of quantum communication protocols over Ethernet networks is proposed, showing the potential of combining classical and quantum technologies for efficient, scalable…