高清福利片

Abstract image representing quantum technology. Shutterstock
高清福利片_

Q-CTRL unveils machine learning technique to pinpoint quantum errors

2 August 2021
Method separates 'real' from background noise in quantum systems
Professor Michael Biercuk's quantum tech startup makes research strides through continued collaboration with the University to enhance quantum computing performance.
Professor Michael Biercuk is CEO of quantum tech startup Q-CTRL.

Professor Michael Biercuk is CEO of quantum tech startup Q-CTRL.

Researchers at the University of Sydney and quantum control startup have announced a way to identify sources of error in quantum computers through machine learning, providing hardware developers the ability to pinpoint performance degradation with unprecedented accuracy and accelerate paths to useful quantum computers.

A joint scientific paper detailing the research, titled 鈥,鈥 has been published in聽Physical Review Letters, the world鈥檚 premier physical science research journal and flagship publication of the American Physical Society (APS Physics).

Focused on reducing errors caused by environmental 鈥渘oise鈥 - the Achilles鈥 heel of quantum computing - the University of Sydney team developed a technique to detect the tiniest deviations from the precise conditions needed to execute quantum algorithms using trapped ion and superconducting quantum computing hardware. These are the core technologies used by world-leading industrial quantum computing efforts at IBM, Google, Honeywell, IonQ, and others.聽

The University team is based at the Quantum Control Laboratory led by Professor Michael Biercuk聽in the Sydney Nanoscience Hub.

To聽pinpoint the source of the measured deviations, Q-CTRL scientists developed a new way to process the measurement results using custom machine-learning algorithms. In combination with Q-CTRL鈥檚 , the researchers were also able to minimise the impact of background interference in the process. This allowed easy discrimination between 鈥渞eal鈥 noise sources that could be fixed and phantom artefacts of the measurements themselves.

鈥淐ombining cutting-edge experimental techniques with machine learning has demonstrated huge advantages in the development of quantum computers,鈥 said of ETH Zurich who conducted the research while at the University of Sydney. 鈥淭he Q-CTRL team was able to rapidly develop a professionally engineered machine learning solution that allowed us to make sense of our data and provide a new way to 鈥榮ee鈥 the problems in the hardware and address them.鈥

Q-CTRL CEO Professor Biercuk said: 鈥淭he ability to identify and suppress sources of performance degradation in quantum hardware is critical to both basic research and industrial efforts building quantum sensors and quantum computers.聽聽

鈥淨uantum control, augmented by machine learning, has shown a pathway to make these systems practically useful and dramatically accelerate R&D timelines,鈥 he said.

鈥淭he published results in a prestigious, peer-reviewed journal validate the benefit of ongoing cooperation between foundational scientific research in a university laboratory and deep-tech startups. We鈥檙e thrilled to be pushing the field forward through our collaboration.鈥

About Q-CTRL

Q-CTRL was spun-out of the University of Sydney by Professor Michael Biercuk from the School of Physics. The startup builds quantum control infrastructure software for quantum technology end-users and R&D professionals across all applications.聽聽

Q-CTRL has assembled the world鈥檚 foremost team of expert quantum-control engineers, providing solutions to many of the most advanced quantum computing and sensing teams globally. Q-CTRL is funded by SquarePeg Capital, Sierra Ventures, Sequoia Capital China, Data Collective, Horizons Ventures, Main Sequence Ventures and In-Q-Tel. Q-CTRL has international headquarters in Sydney, Los Angeles, and Berlin.

Related articles