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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

Integrated Dual-Resonator Architecture for Telecom Photon-Memory Entanglement

Alexander Kolar, Ian Chin, Conner Fong +6

Scalable quantum networks require the efficient generation and storage of entanglement between photonic qubits and quantum memories. Quantum repeaters based on absorptive rare-eart…

quant-ph2026

Centralizing Task-based Approach to Quantum Network Control

Alexander Pirker, Robert J. Hayek, Alexander Kolar +3

For the last decade, layered stacks have dominated the way of reasoning about architectures for quantum networks. However, layered architectures impose stringent design and timing…

quant-ph2026

A hybrid quantum network linking telecom-wavelength atomic and solid-state nodes

Yuzhou Chai, Dahlia Ghoshal, Nayana P. Tiwari +4

Photonic links between disparate quantum technologiessuch as photon sources, memories, processors, clocks, and sensorsare key to scaling quantum networks and realizing a vers…

quant-ph2025

Cross-Validating Quantum Network Simulators

Joaquin Chung, Michal Hajdušek, Naphan Benchasattabuse +7

We present a first cross-validation of two open-source quantum network simulators, QuISP and SeQUeNCe, focusing on basic networking tasks to ensure consistency and accuracy in simu…