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Practical quantum error correction

How can we protect quantum information stored in real physical systems, given that quantum superpositions only survive for fractions of a second? more...

Supervisor(s): Grimsmo, Arne (Dr), Flammia, Steven (Professor)

Debugging a quantum computer

How can we debug a noisy quantum computer when looking inside it collapses the delicate superposition states that power the device? more...

Supervisor(s): Flammia, Steven (Professor)

Circuit quantum electrodynamics

Quantum electrodynamics is the fundamental theory describing photons, electrons and their interaction. What happens when an electronic circuit operate in the quantum regime such tha more...

Supervisor(s): Grimsmo, Arne (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)

Quantum computing with Majorana fermions

A Majorana fermion is an exotic particles with the unusual property of being its own anti-particle, first hypothesised by Ettore Majorana in 1937. Is it possible to use these peculi more...

Supervisor(s): Grimsmo, Arne (Dr)

Information-theoretic Secure Communications via Caching

The need for secure communications is paramount. Cybersecurity breaches cost Australian companies millions of dollars each year. This project aims to circumvent the shortcomings of more...

Supervisor(s): Yeoh, Phee (Dr)

Waveguide-coupled 2D materials for spontaneous parametric down conversion (SPDC) generation and collection

This project aims to generate correlated photons directly on-chip from 2D materials. more...

Supervisor(s): Palomba, Stefano (Associate Professor)

Poling multilayer dielectric structures for compact active optical devices

Optical communications technology has transformed the world. There is a need to get more optical processing functionality into smaller devices, for applications ranging from inexpen more...

Supervisor(s): Fleming, Simon (Professor)

FPGA control of photonic systems

This project involves the design of novel control systems to improve the efficiency of photonic systems. more...

Supervisor(s): Leong, Philip (Professor)

Real-time Low-power Neural Accelerator

This project aims at developing an Application-Specific Integrated Circuit (ASIC) for a low-power learning system processing real-time time-series data. more...

Supervisor(s): Kavehei, Omid (Dr)