It reflects our belief that scaling quantum computers requires orchestrating specialized expertise across the semiconductor ecosystem, academia, and government.
We partner with the semiconductor ecosystem to adapt proven technologies for superconducting quantum hardware.
Collaboration on adapting advanced 300 mm semiconductor fabrication tools for industrial-grade, repeatable superconducting qubit manufacturing.
Integration of low-latency quantum control electronics and orchestration software to enable precise, real-time operation of superconducting qubit systems.
Joint work on design, modeling, and simulation workflows that support complex superconducting circuits and scalable system architectures.
Collaboration on hybrid quantum–classical system architecture and technical roadmapping toward scalable, utility-grade quantum computing.
Strategic partnership combining materials science, nanofabrication, and precision manufacturing expertise to improve qubit performance, reliability, and scalability.
Application of advanced metrology, inspection, and process-control techniques to improve fabrication consistency and qubit yield.
Exploration of the hardware–software interface between superconducting qubits and error-correction–driven system requirements.
Benchmarking and architectural analysis of quantum hardware using simulation tools to evaluate noise, manufacturing imperfections, and fault-tolerant needs.
Through partnerships with government programs and universities, Qolab contributes to research, benchmarking, and infrastructure development.


Participation in government-funded programs advancing benchmarking, scalability, and system-level quantum hardware development.
Collaboration leveraging national user facilities and quantum fabrication infrastructure to accelerate superconducting hardware research and testing.
Joint work on design, modeling, and simulation workflows that support complex superconducting circuits and scalable system architectures.
Qolab participates in key industry alliances to help align standards, roadmaps, and system-level approaches for scaling quantum computing.
A global initiative co-led by Qolab to co-design scalable quantum systems by integrating semiconductor manufacturing, control, software, and HPC expertise.
Participation in a regional quantum ecosystem connecting industry, academia, and national laboratories across the Midwest.
Engagement in a U.S. consortium advancing quantum standards, collaboration, and commercialization.