Current research degree projects
Explore our current postgraduate research degree and PhD opportunities.
Explore our current postgraduate research degree and PhD opportunities.
This project aims to pioneer advancements in the energy-efficient Generative AI models (GenAI), focusing on achieving faster inference times and reduced model sizes without compromising performance and increasing carbon emissions.
Develop the next generation of ultralight optical systems for space - including mirrors, membranes, and photonic stacks engineered to harness light in space. This PhD will advance novel designs, materials, and fabrication techniques to create adaptive, deployable, and space-radiation-tolerant reflectors; enabling breakthroughs in space energy and optical infrastructure.
Postural Orthostatic Tachycardia Syndrome (POTS) predominantly affects young women and has a profound impact on quality of life. This PhD will advance the design and evaluation of mobile health tools to support patients in self-managing their condition through inclusive, evidence-based, and low-energy digital interfaces.
This PhD project focuses on developing advanced algorithms for collective perception and prediction in a distributed UAV swarm to enable real-time wildfire monitoring and forecasting.
Chemistry impacts our lives everyday, from medicines, to materials and the environment. It is essential to develop new processes and strategies to solve some of most urgent and global problems of our time. We offer PhD opportunities in diverse research areas across organic and biological chemistry, towards tackling these issues.
This project focuses on leveraging remote sensing data (satellite imagery and related datasets) to produce high-resolution, low-cost socioeconomic and environmental maps, with a particular emphasis on scalable algorithms rooted in submodularity and combinatorial optimization.
Every day, thousands of staff, patients, and visitors travel to hospitals, creating congestion, delays, and emissions. This project reimagines hospital transport through intelligent, shared mobility. You’ll design algorithms for optimal routing, scheduling, and pricing, building simulations that cut costs, reduce carbon, and make hospital travel smarter, faster, and more sustainable for everyone.
Flexible batteries with seamless integration in textiles will revolutionize the healthcare system. Such batteries could power sensors to continuously monitor vital signals, and antennas to transmit the information to a medical doctor when urgent action is required. This project will investigate smart combinations of materials to build such batteries.
Imagine aircraft that never need to land. This project pioneers the science of perpetual flight, developing intelligent control systems that let UAVs harvest energy from the atmosphere to fly indefinitely. Blending AI, reinforcement learning, and adaptive control, you’ll help create resilient, energy-neutral aviation, advancing autonomy, sustainability, and climate-friendly technology.
This project will focus on designing and testing terahertz (THz) light modulators and manipulators using microstructured materials combined with liquid crystals. It will explore how such systems can resonantly amplify THz field, causing the adjacent layer of liquid crystals to locally reorient thus changing the optical transmission and beam path.