Our users
Quantum hardware suppliers
Bring quantum hardware to market faster with control design and automation software and native error suppression
Empowering hardware teams to solve their biggest challenges
Quantum hardware manufacturers are building the underlying devices and need the right tools to design high-performing products, automate their operations, and scale their organizations.
Quantum hardware teams must advance to bigger, higher performing devices, but these systems are notoriously sensitive and hard to control.
Move faster with the most powerful control design and automation solution for the quantum era.
Boulder Opal provides cutting-edge control technologies through a familiar Python client so users can effectively design, automate, and scale quantum hardware.
With the Scale Up package, Q-CTRL uses industry-leading control expertise to collaborate on custom Boulder Opal solutions to solve critical performance and operational problems.
Boulder Opal
Professional-grade toolkits to design, automate, and scale quantum hardware and controls.](/content/boulder-opal/index.html)
Solutions for quantum hardware providers
Unleash latent hardware performance
Quantum hardware providers are taking complete quantum computing systems and surfacing them as a service on the cloud for broader, more affordable access.
They need tools to maximize the performance and impact of those devices for their clients. Quantum computing end-users are seeking maximum quality of service combined with simplicity when choosing a provider.
Deliver more value to your customers with fully integrated performance management for quantum computing platforms.
Fire Opal offers fully-automated error suppression technology that integrates directly with your platform.
Building on your existing stack and interface, you can offer your customers frictionless performance management as a simple option to unlock the full potential of your platform.
Fire Opal
Effective error suppression for quantum computers as a simple, fully-automated solution.](/content/our-users/quantum-hardware-suppliers#/index.html)
Case studies
Real-world use cases
Effectively, we store two error-correctable logical qubits in a single trapped ion and demonstrate entanglement between them. We did this using quantum control software developed by Q-CTRL, with a physics-based model to design quantum gates that minimise the distortion of GKP logical qubits, so they maintain the delicate structure of the GKP code while processing quantum information.
Vassili Matsos
PhD student in the School of Physics and Sydney Nano
,
The University of Sydney
\
Given the complexity of the physics at play, being able to perform closed-loop optimization of a few physically motivated parameters of the quantum error correction protocol with Boulder Opal is very valuable to us.
Dany Lachance-Quirion
VP of Quantum Hardware
,
Nord Quantique
\
As we develop novel techniques to solve some of the quantum industry’s hardest challenges, Fire Opal is an essential tool to reduce the impact of hardware noise and demonstrate successful results with deeper and wider circuits.
Hayk Tepanyan
Chief Technology Officer
,
BlueQubit
\
The breadth and flexibility of Boulder Opal allowed us to create our own optimization scenario and obtain pulses robust to the five most relevant experimental noise sources at the same time! This will be crucial in the development of atomic interferometers to detect dark matter and gravitational waves at currently unexplored frequencies.
Zilin Chen
Postdoc
,
Northwestern University
\
It was really easy to go from code to experiments. I started from the relevant notebook in the documentation, followed the steps, adapted when necessary, and it simply worked! We’re now using Q-CTRL pulses that allow us to cut the time of our gates by eight times.
Marina Kudra
PhD Student
,
Chalmers University of Technology
\
Get started now
Make quantum technology useful