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Quantum Communications Engineer

Sending encryption keys through space using single particles of light

Building the satellite and ground systems that use quantum physics to share encryption keys, and to reveal anyone trying to intercept them.

What does this career involve?

Quantum communications engineers build systems that send information using individual photons, particles of light. The main use is quantum key distribution, or QKD: sharing the secret keys that encrypt data in a way that shows if anyone has tried to intercept them, because measuring a photon changes it. In space, that means designing satellite payloads, the optical ground stations that talk to them, and the software that turns a stream of photons into a usable key.

Why is this a future career?

In development, not yet in service (autumn 2026). A UK-led research satellite launched in March 2026 to send quantum signals to a ground station in Edinburgh, and the European Space Agency’s first quantum key satellite, Eagle-1, is not expected before late 2027. No operational network exists yet. The UK’s National Cyber Security Centre says new maths-based encryption, not QKD, should be the main defence against quantum computers, so this work sits alongside conventional cryptography rather than replacing it.

Skills for this career

Technical skills
Quantum key distribution
Optics and photonics
Satellite communications
Laser pointing and tracking
Cryptography fundamentals
Soft skills
Analytical thinking
Precision
Research collaboration
Patience with experiments
Explaining complex ideas simply

Related Technologies of the 4IR

Quantum Computing

5G Technology

Nanotechnology

Cloud Computing and Edge Computing

Internet of Things (IoT)

Where to start

Physics and maths are essential, with computing close behind. The usual route is a physics or electronic engineering degree, often followed by postgraduate study, since much of the work is still research.

Photonics
Satellite communications
Cryptography
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