Back to News
quantum-computing

PhD position for UK nationals on Developing a broadband quantum memory for telecom single photons using rare‑earth–doped crystals.

Quantiki
Loading...
2 min read
0 likes
⚡ Quantum Brief
A UK-only PhD position is open to develop a broadband quantum memory for telecom-wavelength single photons using rare-earth-doped crystals, with applications in quantum networking. The project, based at Heriot-Watt University’s Quantum Photonics Lab, aims to link quantum dot photon sources with solid-state quantum memories, enabling high-fidelity storage and retrieval of large-bandwidth quantum states. Funded under the Integrated Quantum Network Hub, the work supports global quantum network development by integrating quantum channels with existing telecom infrastructure. Candidates must have a physics or photonics background and will work under Prof. Margherita Mazzera, combining quantum optics, frequency conversion, and atomic resonance manipulation techniques. The deadline is March 31, 2026, with offers including access to cutting-edge facilities and collaboration with international quantum research partners.
PhD position for UK nationals on Developing a broadband quantum memory for telecom single photons using rare‑earth–doped crystals.

Summarize this article with:

PhD position for UK nationals on Developing a broadband quantum memory for telecom single photons using rare‑earth–doped crystals. Application deadline: Tuesday, March 31, 2026Research group: Quantum Photonics Lab (Heriot-Watt University - Edinburgh)Employer web page: https://www.qpl-hwu.co.uk/Job type: PhDTags: quantum memoriesquantum networkingPhDThe Quantum Photonics Laboratory seeks a talented scientist to undertake research on the demonstration of an efficient interconnect between a quantum dot single photon source and a solid-state quantum memory. Significantly, the goal of the project is to achieve storage of large bandwidth photons in the telecom band into an on demand photonic quantum memory based on rare earth doped crystals. The project will combine generation and optimisation of single photons, quantum frequency conversion, and implementation of quantum storage protocols based on coherent and efficient manipulation of atomic resonances. The projects will be conducted within the framework of the recently funded Integrated Quantum Network (IQN) Hub, led by Heriot-Watt University, which addresses the challenges towards the establishment of a globally linked quantum network connecting quantum nodes via quantum channels co-existing with classical telecom networks. The activity will be carried out under the supervision of Prof Margherita Mazzera. This project sits at the forefront of quantum communication, as we explore how to store and retrieve quantum states of light with high fidelity and over large bandwidths — a key capability for future quantum networks. What we offer: ✨ The chance to work at the interface of quantum optics, materials science, and quantum information ✨ Access to state‑of‑the‑art experimental facilities ✨ A supportive, collaborative environment within a vibrant quantum research community ✨ Opportunities to engage with national and international partners in quantum technologies We are looking for a motivated candidate with a background in physics, photonics, or a related discipline — and a genuine excitement for pushing the boundaries of quantum science. For enquiries, please contact Prof Margherita Mazzera at m.mazzera@hw.ac.uk Log in or register to post comments

Read Original

Tags

photonic-quantum
telecommunications
quantum-networking
quantum-communication

Source Information

Source: Quantiki