Eleven systems installed in customer data centres worldwide.
More than thirty five enterprise and public sector organisations validating our quantum applications. Explore our use cases by industry.
More than thirty five enterprise and public sector organisations validating our quantum applications. Explore our use cases by industry.
35+
6Kw
Our partnership solidifies ORCA’s position as one of the only full-stack quantum computing companies able to quickly and effectively deploy in commercial environments.
ORCA delivers the fastest path to quantum value for you and your customers. By working with ORCA, you will benefit from a phased engagement from workload validation to deployment and lifecycle support.
Working with the ORCA applications and solutions experts, together we identify where quantum can be applied to your workload and service challenges.
Build and run a targeted hybrid workload to show measurable results.
Deploy, integrate and commission the PT-3 system with the your existing AI infrastructure.
Provide service, performance tuning and upgrades built on ORCA's pioneering modular and upgradable photonic quantum architecture that scales to meet the growing needs of your infrastructure.
Digital Realty Innovation Lab · London
See ORCA’s PT-3 running alongside GPU workloads in production-grade AI infrastructure. Register for one of our events, book a private demo or join a 3D virtual tour at Digital Realty’s Innovation Lab.
Show me the PT-3
Talk to our deployment team about facility fit, integration timelines and what a PT series install looks like in your environment.
David Hall DPhil
Head of Delivery
Prof. Ian Walmsley is Chairman of the ORCA Computing Board and a leading figure in quantum optics, quantum memories and waveguide circuits. He is Provost of Imperial College, London, an Honorary Fellow at St Hugh's College, Oxford and a Fellow of the Royal Society, The Optical Society, the Institute of Physics and the American Physical Society. Previously, he was President of the Optical Society of America, Pro-Vice-Chancellor for Research and Innovation, Hooke Professor of Experimental Physics at the University of Oxford and Director of the NQIT (Networked Quantum Information Technologies) hub. Prof. Walmsley is recognised for developing the SPIDER technique for characterising ultra-fast laser pulses.
Enhance renewable energy optimisation and accelerate the development of biofuels.
Investigating molecular structures is an important pursuit in computational chemistry, especially in fields likes biofuel formulation, material innovation, and pharmaceutical development where research acceleration is critical. The specific problem considered here is significant across the energy industry, as molecule’s possible structures directly determine many of its physical and chemical traits. However, the vast array of possible configurations and high computational requirements make it difficult for traditional methods to find low-energy conformations for certain molecules.
ORCA partnered has with bp to explore a hybrid quantum-classical approach using generative adversarial network (GAN) algorithms. This approach aims to generate low-energy conformations of small and medium size hydrocarbon molecules, offering a potential solution to the computational hurdles faced in molecular exploration.