Diraq Secures CTCP Funding to Uncover Energy Applications

Industry / Press Release July 24, 2025

Sydney, Australia, July 23, 2025 - Diraq has been awarded AU$500,000 in funding to explore how quantum computers can enhance the performance, sustainability and security of energy networks.

The funding was awarded through the Australian Government’s Department of Industry, Science and Resources’ Critical Technologies Challenge Program (CTCP). The consortium, led by Diraq, brings together partners including the Real-Time Simulations (RTS) team in UNSW Sydney’s School of Electrical Engineering and Telecommunications, Macquarie University, OPAL-RT TECHNOLOGIES Australia and Australian Energy Market Operator.

The project’s aim is to ascertain the feasibility of using quantum computers to improve the optimisation of increasingly complex energy networks. To do this, quantum computers need to be integrated with real-time simulation tools that can enhance the accuracy, efficiency and scalability of these networks.

Diraq’s role in the consortium will involve building software that allows the RTS team to communicate directly with Diraq’s devices, without the need for manual intervention.

MengKe Feng, Diraq’s Simulation & Device Physics Manager, said, “This will eventually allow non-experimentalists to perform experiments on Diraq’s systems. It’s an initial step towards identifying real applications for quantum computers in the energy sector.”

Once the software has been designed, Diraq will run experiments with devices of 10 qubits to better understand how such algorithms could be implemented in larger devices. The project reflects the primary aim of the CTCP: to connect quantum computers with real-life applications.

“We are delighted to be awarded funding from the Australian Government,” said Diraq's CEO and Founder, Andrew Dzurak. “It’s an opportunity for the company to continue to form key partnerships with subject-matter experts in the quantum ecosystem, which will ultimately enable Diraq to deliver compact, affordable quantum computing that achieves utility scale ahead of its competitors.