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DOE releases national quantum computing roadmap following field-wide effort led by SCAC subcommittee
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DOE releases national quantum computing roadmap following field-wide effort led by SCAC subcommittee

Editor’s note: The following article was originally published by the U.S. Department of Energy Office of Science. Fermilab played a key leadership role in developing the SCAC Quantum Committee Report. Anna Grassellino, Fermilab chief technology officer and associate laboratory director for the Technology Directorate, chaired the Quantum Subcommittee and Supratik Guha, professor at the University of Chicago’s Pritzker School of Molecular Engineering, served as vice chair. Together with the subcommittee, they led an extensive stakeholder-engagement process that drew perspectives from national laboratories, academia, industry and federal agencies, informed by input from hundreds of contributors across the U.S. quantum ecosystem. The report lays out a science-first, milestone-driven roadmap toward demonstrating scientific utility from quantum computing, while building toward the integration of quantum systems with the DOE labs’ research infrastructure, high-performance computing and artificial intelligence. Fermilab thanks the SCAC Quantum Subcommittee members and the many quantum researchers and stakeholders who contributed their time, ideas and expertise. With this report as a foundation, Fermilab looks forward to working alongside partners across the national quantum ecosystem toward an integrated quantum future and the next era of scientific discovery. Every major shift in technology promises to redefine the boundaries of discovery. Quantum computing is rapidly transitioning from a phase of fundamental laboratory research into a scientifically revolutionary capability. As this technology races forward, we need a clear, defined path to success. That is why I charged the Office of Science Advisory Committee (SCAC) Quantum Subcommittee with an ambitious task: to chart a milestone-driven roadmap toward demonstrating a scientifically relevant, error-corrected quantum computer by 2028, and to articulate a long-term vision for a dedicated Quantum Computing User Facili

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QuEra Computing finds nearly half of firms want quantum fault-tolerance plansquantum-computing

QuEra Computing finds nearly half of firms want quantum fault-tolerance plans

Nearly half of companies evaluating quantum technology now prioritize a clear path to fault tolerance over simply increasing qubit counts, according to a new survey from QuEra Computing. The findings signal a marked shift in industry focus, as 45% of respondents identified a fault-tolerance roadmap as one of the most important criteria when selecting a quantum computing provider. The survey also reveals neutral atoms are emerging as a leading architecture, selected by 23% of respondents. Fault-Tolerance Roadmaps Drive Quantum Technology Selection Cost-effectiveness ranks as the most important selection criterion for 50% of companies evaluating quantum technology, according to new survey data, despite a growing emphasis on demonstrable progress toward fault tolerance. This prioritization suggests businesses are actively seeking near-term value alongside long-term potential in quantum investments, balancing ambition with practical considerations. The demand for fault tolerance is not merely aspirational; 78% of respondents consider quantum error correction either critical or very important for realizing commercial value in their intended applications, QuEra Computing says. This high percentage underscores a growing recognition that scaling qubit numbers alone will not deliver useful quantum computation, and robust error mitigation is essential. Yuval Boger, Chief Commercial Officer at QuEra Computing, explained that customers are getting more discerning about what they need to see from competing quantum architectures. He further stated that proven and scalable quantum error correction approaches, once considered desirable features, have now become essential requirements. Neutral atoms emerged as a leading architectural choice, selected by 23% of respondents, surpassing both superconducting qubits at 15% and trapped ions at 11%.

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Quantum Computer Arrives in Public Education, Fairfax County Schools Leads Wayquantum-computing

Quantum Computer Arrives in Public Education, Fairfax County Schools Leads Way

Fairfax County Public Schools will install the world’s first quantum computer directly within a public high school, with Skyview High School designated as the location for this learning environment. The system, described as being about the size of a small refrigerator, is designed to demystify quantum technology and provide hands-on experience for students exploring fields from cybersecurity to medicine. Students will apply the computer to practical problems, such as “finding the most efficient way to organize a schedule,” and compare its approach to traditional computing methods. “Our responsibility is to prepare our students for their future and not our past,” said FCPS Superintendent Dr. Michelle C. Reid, emphasizing the initiative’s focus on skills for careers that do not yet exist. FCPS and Partners Launch First K-12 Quantum Computer Program Skyview High School will be a regional hub for quantum learning following the installation of an operational quantum computer expected in December, a development facilitated by a partnership between Fairfax County Public Schools, Connected DMV, and the Fairfax County Economic Development Authority. Through Connected DMV’s Potomac Quantum Innovation Center, FCPS and its partners are actively building connections with researchers and federal laboratories throughout Virginia, Maryland, and the District of Columbia, extending the reach of this educational opportunity beyond a single school. The Fairfax County Economic Development Authority will further integrate this initiative with the local business and technology community, providing students with direct exposure to industry leaders and emerging career paths within quantum technology. Dr. Gopalakrishnan Balasubramanian, Founder and CEO of XeedQ, emphasized the need for a proactive approach to quantum education, stating, “Quantum computing is a rapidly emerging technology, and it demands a refreshing approach to education.

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