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Updated: Jan 10, 2026

Generation and Coherent Control of Pulsed Quantum Frequency Combs
Published on: June 8, 2018
Coexistence of entanglement-based quantum channels with DWDM classical channels over hollow core fibre in a four node
Marcus J Clark1,2, Obada Alia1,3, Sima Bahrani1
1High Performance Networks Group & School of Electrical, Electronic, and Mechanical Engineering, University of Bristol, Bristol, UK.
Abstract:
We experimentally demonstrate the coexistence of three entanglement-based quantum channels with carrier-grade classical optical channels over 11.5 km hollow core nested antiresonant nodeless fibre, in a four user quantum network. A transmission of 800 Gbps is achieved with four classical channels simultaneously with three quantum channels all operating in the C-band with a separation of 1.2 nm, with aggregated coexistence power of -3 dBm. We established quantum key distribution in the four-node full-mesh quantum network with Bell state fidelity of up to 90.0 ± 0.8%. The secret key rate for all the links in the network are passively preserved over 55 hours of experimental time.
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