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Rigetti Builds Commercial Momentum With Hybrid Quantum-HPC Strategy
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Key Takeaways
Rigetti will supply PSC a 9-qubit Novera system for hybrid quantum-HPC testing, with deployment due in 2027.
Rigetti sees 50-60 nanosecond gate speeds as key to complementing CPUs and GPUs in hybrid computing.
Rigetti delivered two 9-qubit systems to commercial customers in 2026 as it pursues a 1,000-qubit roadmap.
Rigetti Computing (RGTI - Free Report) is increasingly positioning its superconducting quantum computing technology for integration into high-performance computing (HPC) environments. A key development is the company's expanded collaboration with Hewlett Packard Enterprise (HPE - Free Report) and the Pittsburgh Supercomputing Center (“PSC”), under which Rigetti will provide a full 9-qubit Novera quantum computing system for PSC's TangleLab test bed. The system is expected to combine Rigetti's quantum processor, refrigeration and control infrastructure with Hewlett Packard’s HPC environment, allowing researchers and industry users to develop and test hybrid quantum-classical workloads. Rigetti expects the deployment in 2027. Management views the initiative as an important step toward moving its relationship with Hewlett Packard from early experimentation to commercially relevant quantum-enabled HPC solutions.
The hybrid computing opportunity is particularly relevant to Rigetti's strategy because the company believes its superconducting architecture can provide the processing speed needed to work alongside conventional CPUs and GPUs. Management cited gate speeds in the 50-60 nanosecond range and highlighted the potential for faster quantum processing to complement classical computing in workloads where quantum acceleration can reduce time to results or improve computational capabilities.
Beyond the collaboration with HPE, Rigetti is also seeing increasing interest from commercial organizations. The company delivered its first two 9-qubit systems in 2026 to commercial customers for research purposes. While these deployments do not yet represent production quantum workloads, the broader customer mix suggests that commercial engagement is beginning to develop alongside government and university demand.
With Rigetti continuing to improve the fidelity of its 108-qubit Cepheus system and pursuing a chiplet-based roadmap toward approximately 1,000 qubits, the company's strategy is increasingly centered on building the infrastructure and partnerships needed to support broader quantum adoption as the technology advances.
Peers Updates
Quantum Computing Inc. (QUBT - Free Report) recently signed a three-year Framework Agreement with Hamad Bin Khalifa University in Qatar to collaborate on quantum computing, quantum sensing and quantum communications initiatives. The partnership will support joint academic research, executive education programs, industry-focused projects, quantum application development and co-marketing efforts aimed at accelerating quantum technology adoption across Qatar and beyond. The companies also plan to develop practical quantum solutions for real-world challenges while helping cultivate the next generation of quantum talent and leadership.
IonQ (IONQ - Free Report) recently announced a contract with Florida International University (“FIU”) to deliver and install a Superion 256-qubit trapped-ion quantum computer on the university's campus. The agreement marks the first sale and deployment of a Superion 256 system in Florida and establishes FIU as IonQ's flagship academic partner in the state, creating a hub for quantum research, education and workforce development. The on-campus deployment is expected to provide FIU's faculty, students and regional industry partners with direct access to advanced quantum computing capabilities, while FIU's engagement with federal agencies could support research initiatives spanning sensing, cryptography, commercialization and workforce development.
The partnership strengthens IonQ's presence in the academic quantum ecosystem and expands physical access to its hardware, potentially supporting broader adoption and talent development in the region.
Image: Bigstock
Rigetti Builds Commercial Momentum With Hybrid Quantum-HPC Strategy
Key Takeaways
Rigetti Computing (RGTI - Free Report) is increasingly positioning its superconducting quantum computing technology for integration into high-performance computing (HPC) environments. A key development is the company's expanded collaboration with Hewlett Packard Enterprise (HPE - Free Report) and the Pittsburgh Supercomputing Center (“PSC”), under which Rigetti will provide a full 9-qubit Novera quantum computing system for PSC's TangleLab test bed. The system is expected to combine Rigetti's quantum processor, refrigeration and control infrastructure with Hewlett Packard’s HPC environment, allowing researchers and industry users to develop and test hybrid quantum-classical workloads. Rigetti expects the deployment in 2027. Management views the initiative as an important step toward moving its relationship with Hewlett Packard from early experimentation to commercially relevant quantum-enabled HPC solutions.
The hybrid computing opportunity is particularly relevant to Rigetti's strategy because the company believes its superconducting architecture can provide the processing speed needed to work alongside conventional CPUs and GPUs. Management cited gate speeds in the 50-60 nanosecond range and highlighted the potential for faster quantum processing to complement classical computing in workloads where quantum acceleration can reduce time to results or improve computational capabilities.
Beyond the collaboration with HPE, Rigetti is also seeing increasing interest from commercial organizations. The company delivered its first two 9-qubit systems in 2026 to commercial customers for research purposes. While these deployments do not yet represent production quantum workloads, the broader customer mix suggests that commercial engagement is beginning to develop alongside government and university demand.
With Rigetti continuing to improve the fidelity of its 108-qubit Cepheus system and pursuing a chiplet-based roadmap toward approximately 1,000 qubits, the company's strategy is increasingly centered on building the infrastructure and partnerships needed to support broader quantum adoption as the technology advances.
Peers Updates
Quantum Computing Inc. (QUBT - Free Report) recently signed a three-year Framework Agreement with Hamad Bin Khalifa University in Qatar to collaborate on quantum computing, quantum sensing and quantum communications initiatives. The partnership will support joint academic research, executive education programs, industry-focused projects, quantum application development and co-marketing efforts aimed at accelerating quantum technology adoption across Qatar and beyond. The companies also plan to develop practical quantum solutions for real-world challenges while helping cultivate the next generation of quantum talent and leadership.
IonQ (IONQ - Free Report) recently announced a contract with Florida International University (“FIU”) to deliver and install a Superion 256-qubit trapped-ion quantum computer on the university's campus. The agreement marks the first sale and deployment of a Superion 256 system in Florida and establishes FIU as IonQ's flagship academic partner in the state, creating a hub for quantum research, education and workforce development. The on-campus deployment is expected to provide FIU's faculty, students and regional industry partners with direct access to advanced quantum computing capabilities, while FIU's engagement with federal agencies could support research initiatives spanning sensing, cryptography, commercialization and workforce development.
The partnership strengthens IonQ's presence in the academic quantum ecosystem and expands physical access to its hardware, potentially supporting broader adoption and talent development in the region.