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Microscopic Origin of Ferromagnetism in Diluted Magnetic Semiconductors

This project aims to understand the microscopic origin of ferromagnetism in Diluted Magnetic Semiconductors, and to direct the fabrication of high quality Diluted Magnetic Semicondu more...

Supervisor(s): Zheng, Rongkun (Associate Professor)

Magnetic resonance micro-imaging of human and animal tissue.

Use of magnetic resonance microimaging of human and animal tissue to study disease processes. more...

Supervisor(s): Bourne, Roger (Dr)

New technique for studying human brain activity

This project investigates stimulus reconstruction from surface EEG neural activity. Improvements to surface EEG recordings may proceed with the development of skull impedance modell more...

Supervisor(s): Jin, Craig (Associate Professor), Leong, Philip (Professor), McEwan, Alistair (Professor)

Improving long-term outcomes following lower moror neurone facial nerve paralysis

Communication is one of the main functions of the human face. We interact with others through facial expressions which occur as a reponse to social situations and environmental stim more...

Supervisor(s): Coulson, Susan (Dr)

Binaural signal processing algorithms for hearing aids

Within the last half-decade that it has become possible to transfer audio signals between bilaterally-fitted hearing aids (Moore, 2007, The Hearing Journal, Vol. 40, No. 11, pp 46-4 more...

Supervisor(s): Jin, Craig (Associate Professor), Leong, Philip (Professor), McEwan, Alistair (Professor)

Novel Properties of Semiconductor Nanostructures by Strain Engineering

This project aims to understand the novel properties of nanostructured semiconductors under strain by advanced characterisations and simulations. more...

Supervisor(s): Zheng, Rongkun (Associate Professor)

Quantum Enabled Sensing

Development of new quantum-enabled sensors providing unrivalled performance across a range of applications. more...

Supervisor(s): Biercuk, Michael J. (Professor)

Quantum Simulation and Large-Scale Entanglement

Developing techniques for the study of large-scale quantum simulators based on crystals of trapped atomic ions. more...

Supervisor(s): Biercuk, Michael J. (Professor)

Quantum Control with Trapped Ions

This project aims to develop novel techniques for the control of quantum systems using trapped atomic ions. more...

Supervisor(s): Biercuk, Michael J. (Professor)

Diagnosis of high powered pulsed plasmas for the synthesis of new materials

New high speed optical and electronic diagnostics methods will be developed to probe ultra fast plasma phenomena in promising new plasma discharges for the synthesis of metastable m more...

Supervisor(s): Bilek, Marcela (Professor)