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20182026
most citedHigh-rate Scalable Entanglement Swapping Between Remote Entanglement Sources on Deployed New York City Fibers

2 citations · 4 across the 3 of their papers we have counts for

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quant-ph20262 cited

High-rate Scalable Entanglement Swapping Between Remote Entanglement Sources on Deployed New York City Fibers

Alexander N. Craddock, Tyler Cowan, Niccolò Bigagli +11

Entanglement swapping between photon pairs generated at physically separated nodes over telecommunication fiber infrastructure is an essential step towards the quantum internet, en…

quant-ph20261 cited

Bichromatic Quantum Teleportation of Weak Coherent Polarization States on a Metropolitan Fiber

Zofia A. Borowska, Shane Andrewski, Giorgio De Pascalis +12

As quantum technologies mature, telecommunication operators have a clear opportunity to unlock and scale new services by providing the connectivity layer that links quantum compute…

quant-ph20261 cited

Entanglement Distribution over a Polarization-Stabilized Aerial Fiber

Yicheng Shi, Jing Su, Anouar Rahmouni +9

We experimentally demonstrate the distribution of polarization-entangled photons across a 62-km, partially-aerial fiber. With polarization stabilization applied to the fiber link,…

quant-ph2025

Hybrid Fiber-Free-Space Entanglement Distribution Using Off-the-Shelf Quantum Devices

Gustavo C. Amaral, Nienke M. ten Haaf, Breno Perlingeiro +25

Entanglement serves as a fundamental resource for quantum technologies, enabling communication and computation tasks that surpass classical limits. Its distribution across networks…

quant-ph2025

High-Fidelity Quantum Entanglement Distribution in Metropolitan Fiber Networks with Co-propagating Classical Traffic

Matheus Sena, Mael Flament, Shane Andrewski +13

The Quantum Internet, a network of quantum-enabled infrastructure, represents the next frontier in telecommunications, promising capabilities that cannot be attained by classical c…

quant-ph2025

High-fidelity entanglement between a telecom photon and a room-temperature quantum memory

Yang Wang, Alexander N. Craddock, Jaeda M. Mendoza +3

Entanglement distribution through existing telecommunication infrastructure is crucial for realizing large-scale quantum networks. However, distance limitations imposed by photon l…