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Clemson University Advances Quantum Software Research Through $650,000 Initiative Focused on Real-World Hardware Performance

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Clemson University secured $650,000 to advance quantum software research through its Scalable High-Performance and Quantum Computing Systems Lab (ScaLab), focusing on optimizing programs for real-world quantum hardware performance. The funding allocates $250,000 to student-led quantum and machine learning research, $150,000 for three years of Quantathon competitions, and $250,000 to establish a statewide student quantum club network over seven to eight years. Led by Dr. Rong Ge, ScaLab develops tools to bridge the gap between quantum software and hardware constraints, enhancing reliability and execution efficiency on physical devices. This initiative builds on South Carolina’s 2023 $15 million quantum investment, reinforcing the state’s research infrastructure and workforce pipeline in quantum information science. The project combines technical research with talent development, positioning Clemson as a key player in quantum software innovation while fostering long-term industry-academia collaboration.
Clemson University Advances Quantum Software Research Through $650,000 Initiative Focused on Real-World Hardware Performance

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Insider Brief Clemson University is expanding South Carolina’s quantum computing capabilities through a $650,000 initiative supporting the Scalable High-Performance and Quantum Computing Systems Lab, with a focus on improving how quantum software performs on real hardware. The funding includes $250,000 for student-led quantum and machine learning research, $150,000 for multi-year Quantathon events, and $250,000 to establish a long-term statewide student quantum club network. The initiative builds on South Carolina’s earlier $15 million investment in quantum information science and aims to strengthen both the state’s technical research capacity and future quantum workforce pipeline. PRESS RELEASE — Clemson University is advancing South Carolina’s quantum research capacity through a $650,000 initiative supporting the Scalable High-Performance and Quantum Computing Systems Lab (ScaLab), an effort focused on improving how quantum programs are optimized and executed on real hardware. Led by Dr. Rong Ge, ScaLab focuses on improving how quantum software runs on real machines. Quantum computers operate very differently from traditional systems, and writing programs that perform efficiently on physical devices remains a central challenge in the field. The lab develops tools that help adapt software to the unique constraints of quantum hardware, improving reliability and performance in real-world settings. The project supports core research, talent development, and statewide capacity building. Of the total investment: $250,000 supports graduate and undergraduate research within ScaLab, enabling hands-on work in quantum computing and machine learning tied directly to active research outputs. $150,000 funds multi-year Quantathon events over a three-year period, creating structured, applied learning environments where students engage real computational challenges aligned with emerging quantum and hybrid systems research. $250,000 establishes a Statewide Student Quantum Club with sustained funding over a projected seven- to eight-year runway, creating a durable network that connects students, faculty, and institutions while strengthening long-term participation in quantum research and workforce pathways. The initiative builds on South Carolina’s earlier statewide investment in quantum information science and technology. In 2023, state leaders committed $15 million to coordinate quantum readiness across institutions and industries. ScaLab reflects a continued shift toward sustained, project-based research that strengthens technical depth while building the human infrastructure necessary for long-term quantum capability in the state. “As quantum hardware matures, performance increasingly depends on how well software is adapted to the physical system,” said Dr. Rong Ge, director of ScaLab. “By integrating physics-informed machine learning into the compilation process, we are improving how quantum programs run in practice while training students to contribute meaningfully to this rapidly evolving field.” Through research collaboration and statewide engagement, ScaLab positions Clemson as a contributor to the evolving software and systems layer of quantum computing while strengthening South Carolina’s quantum ecosystem. More information about ongoing quantum initiatives in South Carolina can be found at scquantum.org.

Matt Swayne LinkedIn With a several-decades long background in journalism and communications, Matt Swayne has worked as a science communicator for an R1 university for more than 12 years, specializing in translating high tech and deep tech for the general audience. He has served as a writer, editor and analyst at The Quantum Insider since its inception. In addition to his service as a science communicator, Matt also develops courses to improve the media and communications skills of scientists and has taught courses. matt@thequantuminsider.com Share this article:

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Source: Quantum Daily