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Quantum Innovation Shifts from Labs to Real-World Applications, New SCSP Report Reveals

By Advos
Quantum information science is entering a second phase where regional ecosystems, not just national efforts, drive innovation and economic competitiveness, according to a new SCSP newsletter.
Quantum Innovation Shifts from Labs to Real-World Applications, New SCSP Report Reveals

Quantum information science, engineering, and technologies (QISET) has entered its second phase, rapidly evolving from lab-based projects to real-world applications that are impacting the strategies and finances of both the federal government and the private sector, according to experts at the Special Competitive Studies Project (SCSP), a nonprofit and nonpartisan initiative aimed at strengthening America's long-term competitiveness in artificial intelligence.

In the first phase, known as Quantum 1.0, quantum mechanics and science fostered the development of lasers and transistors. Today, Quantum 2.0 activity centers on developments in areas including photonics, microelectronics, and specialized materials. As the United States seeks to enhance its quantum capabilities, SCSP highlights the history, foundation, and future of place-based quantum innovation in a new limited newsletter, "Quantum States," which examines how different states and regions are leading the way.

States were assessed across a range of metrics, including cited quantum information science research, patents, the volume of both 'pure play' and quantum-enabling companies, the number of military research facilities, breadth of the full quantum stack (defined as computing, sensing, and networking), and the number of quantum-related job openings.

"Developing a robust ecosystem of quantum technologies is not a one-size-fits-all approach, in which local leadership is guaranteed by hosting the most companies within a region. Rather, it requires a cohesive, strategic effort leveraging strengths within that state," according to the SCSP experts.

Currently, California leads in most aspects of Quantum 2.0, including industrial capacity, talent pipelines, and market ecosystems, but other established hubs include New York, Illinois, Colorado, Maryland, and Massachusetts. However, several other states are poised to become players, including Texas, North Carolina, and Florida given their high number of PhDs awarded, and the presence of quantum research centers in many of their academic institutions.

"The most successful quantum states build strong synergies between pillars of a quantum ecosystem: academia, NIST, national labs, startups, and private industry," according to the SCSP experts. Ultimately, true quantum hubs emerge where industry, academia, and government actively connect.

For more information, visit SCSP to learn more and for future editions of the Quantum States newsletter.

Advos

Advos

@advos