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most citedQuantum Advantage in Distributed Sensing with Noisy Quantum Networks

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quant-ph20262 cited

Quantum Advantage in Distributed Sensing with Noisy Quantum Networks

Allen Zang, Alexander Kolar, Alvin Gonzales +5

We show that quantum advantage in distributed sensing can be achieved with noisy quantum networks which only distribute noisy entangled states. We derive a closed-form expression o…

quant-ph2026

InterQnet: A Heterogeneous Full-Stack Approach to Co-designing Scalable Quantum Networks

Joaquin Chung, Daniel Dilley, Ely Eastman +21

Quantum communications have progressed significantly, moving from a theoretical concept to small-scale experiments to recent metropolitan-scale demonstrations. As the technology ma…

quant-ph2026

Simulation of Quantum Transduction Strategies for Quantum Networks

Laura d'Avossa, Caitao Zhan, Joaquin Chung +3

The Quantum Internet would likely be composed of diverse qubit technologies that interact through a heterogeneous quantum network. Thus, quantum transduction has been identified as…

quant-ph2025

A Review of Software for Designing and Operating Quantum Networks

Robert J. Hayek, Joaquin Chung, Rajkumar Kettimuthu

Quantum network protocol development is crucial to realizing a production-grade network that can support distributed sensing, secure communication, and utility-scale quantum comput…

quant-ph2025

Analytical Performance Estimations for Quantum Repeater Network Scenarios

Allen Zang, Joaquin Chung, Rajkumar Kettimuthu +2

Quantum repeater chains will form the backbone of future quantum networks that distribute entanglement between network nodes. Therefore, it is important to understand the entanglem…

quant-ph2024

Simulation of Entanglement-Enabled Connectivity in QLANs using SeQUeNCe

Francesco Mazza, Caitao Zhan, Joaquin Chung +3

Quantum Local Area Networks (QLANs) represent a promising building block for larger scale quantum networks with the ambitious goal -- in a long time horizon -- of realizing a Quant…