Infleqtion will deliver the first fault-tolerant neutral-atom quantum computer to Illinois in 2027, anchoring Chicago as a US quantum hub.
Infleqtion's Sqale platform, integrated with Nvidia's NVQLink, targets more than 50 logical qubits by 2027 — positioning neutral-atom quantum computing as a viable accelerator alongside GPU-based AI infrastructure. The system will be deployed at the Illinois Quantum & Microelectronics Park on Chicago's South Side, where US Steel's South Works plant once stood.
"Chicago is rapidly becoming one of the most important quantum ecosystems in the world, where quantum computing moves from theoretical promise to practical reality," Matthew Kinsella, chief executive officer at Infleqtion, said.
The system is designed to demonstrate more than 50 logical qubits on a path toward 100, with an architecture supporting scaling beyond 1,000 physical qubits. Infleqtion's neutral-atom systems are already operational in the UK — including a 100-physical-qubit system at the National Quantum Computing Centre — and in Japan. The Illinois installation extends that operating experience into US national infrastructure.
Infleqtion, which trades on the New York Stock Exchange under the ticker INFQ, is betting that neutral-atom systems tightly coupled with Nvidia's AI compute can be among the earliest commercially relevant quantum applications. The company holds a $100 million letter of intent with the US Department of Commerce and three projects under the Department of Energy's Genesis Mission. Quantum computing could become a $1 trillion industry within the next decade, with some projections estimating roughly 200,000 quantum-related jobs coming to the Midwest over the next 10 years.
Energy Grid as the First Use Case
Infleqtion's new Chicago Quantum Innovation Center opens with a focus on the American energy grid, applying quantum optimization to problems grid operators face today — including unit commitment, contingency analysis and nuclear fuel loading. The company holds an ARPA-E-funded award for the Enhancing Neutral-atom Computers for Optimizing Delivery of Energy project and is a partner on an energy-sector award through the National Quantum Algorithm Center's Grand Challenges program, alongside Constellation Energy and the Electric Power Research Institute.
"Energy is one of the best proving grounds for quantum computing because the problems are consequential and immediate," Pranav Gokhale, chief technology officer and co-founder at Infleqtion, said. "AI data centers are pulling more power than the grid was built to handle, and old tools can't keep up."
Illinois Governor JB Pritzker has positioned the state as a contender in the global quantum race. "Illinois built a national economy on steel and rail, and today we are building the next one on quantum," Pritzker said. "Infleqtion is delivering on the promise of that investment, bringing the first neutral-atom quantum computer to IQMP."
Government Backing and Competitive Landscape
Infleqtion's three Genesis Mission projects span collaborations with Argonne National Laboratory, Brookhaven National Laboratory, Lawrence Livermore National Laboratory and the University of Colorado Boulder. The projects cover AI-optimized quantum circuit design for nuclear applications, deployable atomic quantum sensing with agentic AI, and quantum machine learning for nuclear fusion energy research.
The company competes with superconducting approaches from International Business Machines Corp. and trapped-ion systems from IonQ Inc. in the race to achieve quantum advantage over classical supercomputers. Unlike those approaches, Infleqtion's neutral-atom technology uses lasers to trap individual atoms, which the company says offers greater scalability and lower error rates at room temperature.
Infleqtion shares have not yet established a sustained trading pattern following the company's business combination with Churchill Capital Corp X. The quantum computing market is projected to reach roughly $20 billion by 2035, according to industry estimates, as fault-tolerant systems move from laboratory demonstrations to commercial deployment.
This article is for informational purposes only and does not constitute investment advice.