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  • For quantum computing, different qubits are better together

    The Heterogeneous Architectures for Quantum (HARQ) program is now underway, working to address a fundamental challenge in quantum computing: how to scale beyond single-technology systems. Most current approaches rely on a single type of qubit, which forces system designs to inherit the limitations of that technology. HARQ is exploring a different model: integrating multiple qubit types within a single architecture, each selected for its strengths. Over the next 24 months, 19 teams across 15 organizations will develop the software and hardware needed to enable these systems, including cross-platform compilation tools and high-fidelity interconnects.

    Categories: DARPA, Quantum Computing
  • NSF launches $100M National Quantum and Nanotechnology Research Infrastructure program

    The U.S. National Science Foundation is investing up to $100 million to establish a nationwide network of open-access research facilities for quantum and nanoscale technologies, innovation, and workforce training. Through the new NSF National Quantum and Nanotechnology Infrastructure (NSF NQNI) program, NSF will support up to 16 sites over five years, providing students, researchers, and industry with access to state-of-the-art fabrication and characterization tools, instrumentation, and expertise.

  • President Trump Signs Technology Prosperity Deal with United Kingdom that involves Quantum Computing

    (September 18, 2025) President Trump and UK Prime Minister Starmer signed the Technology Prosperity Deal, a landmark science and technology agreement that will propel the U.S. – UK special relationship to new heights for the technological age, including in quantum.

    Categories: International
  • Happy World Quantum Day from the National Quantum Initiative

    Happy World Quantum Day!

    Categories: International, Workforce
  • DARPA Announces Stage A Quantum Benchmarking Initiative Participants

    (April 3, 2025) DARPA’s Quantum Benchmarking Initiative (QBI) has identified a cohort of companies who will characterize their unique concepts for creating a useful, fault-tolerant quantum computer within a decade. QBI, which kicked off in July 2024, aims to determine whether it’s possible to build such a computer much faster than conventional predictions. Specifically, QBI is designed to rigorously verify and validate whether any quantum computing approach can achieve utility-scale operation — meaning its computational value exceeds its cost — by the year 2033.

  • DOE Announces $71 Million for Research on QIS Enabled Discoveries in High Energy Physics

    (January 16, 2025) The U.S. Department of Energy announced $71 million in funding for 25 projects in high energy physics that will use the emerging technologies of quantum information science to answer fundamental questions about the universe. Awards funded under this program will advance theories of gravity and spacetime, develop quantum sensors that can see previously undetectable signals, and build pathfinder experiments to demonstrate increased discovery reach in searches for dark matter and other new particles and phenomena. The projects were selected by competitive peer review under the DOE Funding Opportunity Announcement for Quantum Information Science Enabled Discovery 2.0 (QuantISED 2.0).

    Categories: DOE
  • DOE Announces $625 Million for National Quantum Information Science Research Centers

    (January 15, 2025) The U.S. Department of Energy’s Office of Science is announcing that $625 million is available to support National Quantum Information Science Research Centers. These centers, which are multi-institutional, multi-disciplinary teams, will accelerate the transformational advances in basic science and quantum-based novel-technology platforms needed to develop world-leading capabilities in Quantum Information Science (QIS), and in support of the National Quantum Initiative Act. Each center will integrate multiple levels of innovation, blending basic research, engineering, and technology development in a co-design framework. The centers will deliver prototype novel-technology platforms, capabilities, and major scientific breakthroughs that, in the future, can be further developed into a resource or user-facility capability for the entire QIS R&D community.

    Categories: Centers, DOE
  • DARPA to Host Proposers Day for Robust Quantum Sensors Program

    (December 23, 2024) On January 31, 2025, DARPA will host an in-person Proposers Day at the DARPA Conference Center in Arlington, VA. The Proposers Day is an opportunity to learn more about the anticipated Robust Quantum Sensors (RoQS) program vision, foster collaboration among stakeholders, address questions, and promote teaming arrangements for research and development.

  • The National Quantum Initiative Supplement to the President’s FY 2025 Budget Released

    (December 18, 2024) Today, the National Quantum Initiative (NQI) Supplement to the President’s FY 2025 Budget was released. It is the fifth annual report on the NQI Program, as required by the NQI Act, which became Public Law 115-368 in December 2018 to accelerate American leadership in quantum information science (QIS) and technology.

    Categories: QIS Budget
  • Final Pilot Projects Announced for NSF National Quantum Virtual Laboratory

    (December 16, 2024) Realizing practical advantages from quantum-scale phenomena has been a long-sought milestone in quantum information science. The U.S. National Science Foundation today announced six pilot projects to bridge scientific gaps between current quantum technological capabilities and those needed to fully harness quantum properties of energy and matter for practical uses. Each pilot project will receive $1 million for phase one of a process to design and eventually implement testbeds for quantum technologies in real-world environments. These projects join five others that were announced in August 2024. These efforts are collectively supported by the NSF National Quantum Virtual Laboratory (NSF NQVL) initiative, an ambitious program to accelerate the development of quantum technologies by providing researchers anywhere in the U.S. with access to specialized resources. NQVL project teams are led by quantum experts spanning academia, industry, national labs and government as well as others with diverse backgrounds.

    Categories: NSF
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