Completed Physics & Astronomy Computing & AI

Airqkd

In plain English

AI plain-English summary

A UK consortium is building the hardware and network infrastructure to send quantum-secured encryption keys through open air, not just optical fibres, to protect short and mid-range wireless communications. Today’s wireless networks—5G mobile data, vehicle-to-vehicle links, drone control signals—are vulnerable to interception. Standard encryption can be broken by future quantum computers. Quantum key distribution (QKD) offers provably secure encryption, but it has mostly been demonstrated over fibre cables. Free-space QKD, which sends single photons through the atmosphere, is far harder: turbulence, daylight, and moving receivers scramble the signal. AirQKD tackles that gap by developing the components—single-photon detectors, compact transmitters, beam-steering optics—and integrating them into a working network. If the project succeeds, it will demonstrate the first practical free-space quantum-secured links for 5G base stations and for autonomous and connected vehicles. That means a delivery drone or a self-driving car could authenticate its commands or share sensor data with a guarantee that no third party is listening in. The same infrastructure could protect temporary communications—disaster-response networks, military field links, or rural broadband—where laying fibre is impractical. The work is applied engineering: it takes fundamental quantum-physics principles and turns them into field-tested hardware.

View original technical description
AirQKD establishes a UK ecosystem, from single-photon components to networked quantum systems, to protect short to mid-range communication in free space. In particular we carry out pilot demonstrations of the enabling infrastructure for quantum-secure 5G and autonomous and connected vehicles.

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Related Research

Grants with similar aims, by meaning.

ReQON: Reconfigurable Quantum Optical Networking
Project U-Quant: Ultra-low SWaP quantum communication payload for tactical and space applications
Q-DOS : QKD for Drones with Optimal Size weight and power
QUANTA: Quantum Communications over Atmospheric Channels Aided by Detector Arrays
3QN: Towards A New UK Industry for Novel Quantum Receivers in Nascent Satellite QKD Global Markets

Original classification

Collaborative R&D

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.