Development of a Boston-area 50-km fiber quantum network testbed

07/28/2023
by   Eric Bersin, et al.
0

Distributing quantum information between remote systems will necessitate the integration of emerging quantum components with existing communication infrastructure. This requires understanding the channel-induced degradations of the transmitted quantum signals, beyond the typical characterization methods for classical communication systems. Here we report on a comprehensive characterization of a Boston-Area Quantum Network (BARQNET) telecom fiber testbed, measuring the time-of-flight, polarization, and phase noise imparted on transmitted signals. We further design and demonstrate a compensation system that is both resilient to these noise sources and compatible with integration of emerging quantum memory components on the deployed link. These results have utility for future work on the BARQNET as well as other quantum network testbeds in development, enabling near-term quantum networking demonstrations and informing what areas of technology development will be most impactful in advancing future system capabilities.

READ FULL TEXT

page 2

page 4

page 6

research
05/15/2023

Reconfigurable Quantum Internet Service Provider

With the recent developments in engineering quantum systems, the realiza...
research
08/30/2023

Quantum Network Planning for Utility Maximization

Existing classical optical network infrastructure cannot be immediately ...
research
12/27/2022

Quantum Communication Systems: Vision, Protocols, Applications, and Challenges

The growth of modern technological sectors have risen to such a spectacu...
research
11/22/2021

Experimental demonstration of entanglement delivery using a quantum network stack

Scaling current quantum communication demonstrations to a large-scale qu...
research
05/05/2022

Quantum Semantic Communications: An Unexplored Avenue for Contextual Networking

Future communication systems (6G and beyond) will witness a paradigm shi...
research
01/07/2020

Quantum-Secure Microgrid

Existing microgrid communication relies on classical public key systems,...
research
04/23/2020

Preliminary Study of Connectivity for Quantum Key Distribution Network

Quantum network is fragile to disturbances when qubits are transmitted t...

Please sign up or login with your details

Forgot password? Click here to reset