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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)

Modelling social network structure, technology use and care coordination

This project uses theories from social networks and information systems to construct a model for understanding how network (structure, position and ties) and social technology use i more...

Supervisor(s): Chung, Kenneth (Dr)

Smart House Energy Management System

Utilities and customers will face significant economic challenges and need to be empowered with information and technologies to reduce electricity consumption, and related future co more...

Supervisor(s): Verbic, Gregor (Dr)

Participation of Wind Generation in Frequency Control

The increased integration of wind generation is accompanied with a growing concern about secure and reliable power system operation. For example, to cope with wind intermittency, th more...

Supervisor(s): Verbic, Gregor (Dr)

Quantum Control Theory

We address the challenge of creating efficient, error-resilient quantum control approaches for use in future quantum technologies. more...

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

Towards a social network-inspired model for understanding evidence uptake and pain management in cancer care

This project is aimed at understanding treatment processes and decisions made by medical practitioners (e.g. nurses) involved in cancer care. In particular, we aim to model the role more...

Supervisor(s): Chung, Kenneth (Dr)

Towards a social network-inspired model for improving medical referrals in cancer care

This project is aimed at understanding how general practitioners (GP) tap into their professional network for making cancer patient referrals to appropriate specialist units. The so more...

Supervisor(s): Chung, Kenneth (Dr)

Social networks model for Open Source Drug Discovery

Using an open source drug discovery approach, current research shows that it is possible to find an improved synthesis of drugs for diseases (e.g. a tropical neglected disease such more...

Supervisor(s): Chung, Kenneth (Dr)

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 Enabled Sensing

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

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