Towards metropolitan free-space quantum networks
arXiv:2205.12862 · doi:10.1038/s41534-023-00754-0
Abstract
Quantum communication has seen rapid progress towards practical large-scale networks, with quantum key distribution (QKD) spearheading this development. While fibre based systems have been shown to be well suited for metropolitan scales, suitable fibre infrastructure may not always be in place. Here, we make the case for an entanglement-based free-space quantum network as a practical and efficient alternative for metropolitan applications. We developed a deployable free space QKD system and demonstrated its use in realistic scenarios. For a representative 1.7-km free-space link, we showcase its ad hoc deployability and achieve secure key rates of up to 5.7 kbps, with 2.5 kbps in direct noon sunlight. By extrapolating experimental data, we show that kbps key rates are achievable even for 10-km distances and multi-user scenarios. We anticipate that our work will establish free space networks as a viable solution for metropolitan applications and an indispensable complementary building block in the future global quantum internet.
Expanded analysis, improved plots, added information that further supports our claims; results unchanged
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- Towards Global Quantum Key Distribution
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- Ad-hoc hybrid-heterogeneous metropolitan-range quantum key distribution network
- Implementation of space-division multiplexed entanglement-based quantum cryptography over multicore fiber
- Rubidium-Doped KTiOPO Waveguides as a Dual-Type Photon Pair Source
- Designing a compact cavity-enhanced source of entangled photons
- Limits to the validity of gravitational redshift as a quantum-optical multimode mixer
- Optimizing Continuous-Wave-Pumped Entanglement-based QKD in Noisy Environments
- Composable Finite-Size Security of High-Dimensional Quantum Key Distribution Protocols
- Demonstration of a reconfigurable quantum network architecture suitable for ground-to-space communication