Opinion: Connecticut must seize quantum technology opportunity and the job creation it brings

UConn and Yale jointly received a grant last May from the National Science Foundation to plan and design QuantumCT

The elusive world of quantum physics, first uncovered a century ago, is driving a technological revolution today. Quantum technologies are based on peculiar properties of subatomic particles and already help power medical imaging machines and microchips. These technologies are advancing rapidly and extending their impact. Quantum computing, for instance, can handle certain processing problems that classical computers can’t — and it stands to bring huge improvements in fields such as data security, investment portfolios, cancer treatments, transport efficiency and artificial intelligence.

As quantum physics has taught us over the last century, matter and energy at very small scales behave bizarrely, yet these qualities can be used to create unprecedented new technologies. In a quality called superposition, a particle can exist in many states at once. Another strange behavior is entanglement, where two particles are linked at a distance in a way that makes them, in a sense, the same entity. Superposition means quantum computers can use subatomic particles to calculate a vast number of possible solutions simultaneously, and entanglement could transform how we store and work with data.

The quantum revolution will not only radically alter technology, but also reshape the global economic landscape to a degree that’s hard to overstate. Just as gas-powered transport made horsepower obsolete, the first countries and industries to develop and harness quantum technologies stand to outcompete their counterparts. That goes, too, for Connecticut.

University of Connecticut and Yale University both have strength in quantum research. With partners around the state, our universities have joined forces to make Connecticut a hub for industries that use quantum technologies.

Called QuantumCT, our proposed initiative aims to accelerate research and help industry partners identify problems quantum tech could solve. We are designing it to support inclusive growth, ensuring benefit to the widest possible variety of stakeholders. With workforce development a key priority, QuantumCT will promote equitable job creation and education for lucrative, stable, and rewarding careers in the quantum industry.

The stakes are huge. According to McKinsey, the market for quantum computing, communications, and sensing could reach $106 billion by 2040. Quantum computing alone is predicted to generate as much as $1.27 trillion by 2035 in just the chemical, life sciences, finance, and automotive industries. Connecticut’s defense, biotech, and financial-services industries, too, can expect great gains from quantum tech, and Connecticut communities of all stripes can and should benefit from this abundance.

The time is now

The world is now at a tipping point. Investors are plunging funds into quantum technology start-up companies — of all such investments since 2001, over two-thirds occurred in 2021 and 2022, according to McKinsey. And the National Institute of Standards and Technology is hurrying to meet a 2024 deadline to standardize algorithms that will protect computers from quantum cyberattacks.

UConn and Yale jointly received a grant last May from the National Science Foundation to plan and design QuantumCT. If our full proposal succeeds, Connecticut could receive $160M in federal funds over 10 years to realize this vision.

Other QuantumCT partners include state and municipal government leaders, businesses, nonprofits, and companies, including Boehringer Ingelheim and RTX Technology Research Center, the research arm of RTX businesses Collins Aerospace, Pratt & Whitney, and Raytheon.

Congress must release funds

Although UConn and Yale are committed to making Connecticut a quantum corridor, neither we nor the state can do so without long-term federal support.

The grant we received, plus the larger grant we are competing for, comes from the NSF’s Regional Innovation Engines—a program established through the 2022 CHIPS and Science Act. Congress has yet to fully appropriate funds, however, and no NSF Engines awards have gone to New England.

Given the economic competition, this is troubling. The United States’ strength as a science and technology superpower is under intense pressure. According to the Association of American Universities, our research and development investments are at a 45-year low as a share of gross domestic product. In 2023, government investments in science fell some $3 billion short of the amount authorized by CHIPS and Science. So far this year, the outlook is grimmer still: in Congress, both houses have proposed investments at least $7 billion short of what CHIPS and Science allows.

Meanwhile, China’s $15.3 billion government investment in quantum dwarfs the US’s $3.7 billion. The European Union is also outrunning us with $8.4 billion in quantum research. The EU also boasts far more quantum-educated graduates than the US does.

If we don’t reverse these trends, our country will falter in the race to the quantum future. As QuantumCT works to position Connecticut as a quantum tech leader, we urge Congress to fully fund the CHIPS and Science Act—and we invite Connecticut residents, lawmakers, businesses, and organizations to join in the work.

Michael Crair is vice provost for research and William Ziegler III professor of neuroscience and professor of ophthalmology and visual science at Yale University. Pamir Alpay is vice president for research, innovation, and entrepreneurship and Board of Trustees Distinguished Professor of Materials Science and Engineering at the University of Connecticut.

Michael Criar & Pamir Alpay | Hartford Courant | Original Article

Recent News

U.S. National Science Foundation Announces Transformational Award to Connecticut’s Quantum Tech Sector

For Immediate Release
July 14, 2026 —
WASHINGTON, D.C. — The U.S. National Science Foundation (NSF) announced today that
Connecticut is one of twelve regions selected to receive an NSF Regional Innovation
Engines (NSF Engines) award, joining a portfolio of regional technology clusters that are
accelerating the development of critical technologies and building a durable U.S.
technology advantage.
The NSF Quantum Technologies Engine in Connecticut, led by the University of
Connecticut in partnership with Yale University, Southern CT State University, Connecticut
State Community College, ConnCORP, CT Innovations, and the State of Connecticut, aims
to advance American quantum innovation and secure the domestic quantum supply chain
by accelerating the commercialization of quantum technologies for national defense,
biotechnology, and financial services. Through innovation, applied research leading to new
technologies, support for inventors and entrepreneurs, and workforce development, the
NSF Quantum Technologies Engine will advance quantum sensing, secured
communications, computing, and materials through shared testbed, deep-tech incubator
and translation pathways.
“NSF Engines investments in critical technologies and future industries will transform
America’s innovation infrastructure for decades to come,” says Brian Stone, performing the
duties of the NSF director. “The NSF Quantum Technologies Engine will advance the
Nation’s quantum innovation by accelerating the commercialization of quantum
technologies for national defense, biotechnology and financial services.”
The NSF Quantum Technologies Engine in Connecticut (the QuantumCT Engine) team will
initially receive a two-year, $15 million award. The funds will support the Engine’s
technology translation, workforce development, and incubator operations. The funds will
also facilitate industry and community engagement to deliver broad societal benefits. By
demonstrating sufficient progress, the QuantumCT Engine has the potential to receive
$160 million from NSF over the next decade.
The QuantumCT Engine will leverage world-leading research and innovation expertise from
UConn and Yale to pursue translational research to benefit industry, generate technology
ventures, and train the region’s workforce to enter a high-growth field. It will also deliver
technology acceleration and startup support services to drive public-private partnerships
and create a quantum ecosystem that generates economic growth.
Quantum technology industries are expected to grow to $200 billion by 2040, with the
potential to reshape sectors important to Connecticut and the country, including
aerospace, defense, drug development, manufacturing, and finance and insurance.
Connecticut companies that are adopting quantum technologies support over 270,000
jobs, accounting for 38% of wages in the state. They also are responsible for millions of
jobs and over $28.7 billion in GDP nationwide.
“Connecticut is the nation’s leading state for quantum technology adoption,” says Pamir
Alpay, UConn’s provost and the principal investigator on the NSF-funded proposal. “The
award recognizes our team’s success in establishing partnerships with industry to
accelerate quantum technologies and build a quantum-ready workforce.”
“This award application process was highly competitive, and it’s a huge win for
Connecticut,” says Gov. Ned Lamont. “Our pioneering research and advanced application
pipeline helped set us apart from the competition. Whereas other states may be theorizing
about quantum, we’re already applying it together with corporate partners across the state.
These federal funds, combined with state investment, will accelerate Connecticut’s
progress in quantum technology and help establish our state as a national and global
leader in this field—and we’re grateful for NSF’s support in getting us here. This investment
will help create good jobs and new opportunities for workers across the economy as
quantum’s impact grows.”
The NSF Engines program invests in regional ecosystems with the potential to drive
economic growth through technological innovation. The QuantumCT Engine proposal was
chosen for funding from a field of 15 finalists following a highly competitive national
selection process.
“As Connecticut’s flagship public university and the state’s land-grant institution, UConn
takes pride in its leadership role within the QuantumCT Engine. Our university is home to
more than 60 esteemed faculty members who are experts in the field of quantum science
and will collaborate with Yale researchers to drive innovative advancements and
groundbreaking discoveries in quantum research,” UConn President Radenka Maric says.
“Over the past three years, we have been working hand-in-hand with our academic, state,
industry, and community partners to position quantum technologies as a catalyst for
economic development that will fuel prosperity in our state and nation. It is crucial that
America take the lead in the global quantum race to safeguard national security, secure our
digital economy, and drive future economic growth. Furthermore, we must excel
internationally in quantum healthcare to deliver life-saving therapeutics and diagnostics. I
am grateful to Governor Lamont and Dan O’Keefe, the commissioner of the Department of
Economic and Community Development, for their grand vision for our state.”
The State of Connecticut has pledged $121 million to the QuantumCT Engine, comprising
$60 million already invested and an additional $60 million upon receiving the NSF award.
This state support will build a quantum incubator in New Haven, the Engine’s hub, among
other initiatives.
In 2023, NSF awarded the QuantumCT Engine team a $1 million NSF Engines Development
Award through UConn, which established the operational structure and built the
partnerships to drive the ecosystem. QuantumCT, a 501(c)(3) nonprofit organization, was
founded by UConn and Yale as part of the NSF Engine Development Award to support
applied research, help companies explore quantum applications, generate startups, and
prepare a skilled workforce.
Industry partners are key to the QuantumCT Engine’s success. Quantinuum and D-Wave
are partnering to develop quantum computing testbeds with QuantumCT that will be used
for experimentation and technology translation activities.
Quantum technology adopters – including RTX, Travelers, Boehringer Ingelheim, Pfizer,
Amphenol, and Microsoft – have been working with the QuantumCT Engine team over the
past several years on applied research projects that bring quantum capabilities directly to
their product lines.
“With this transformative award, NSF has recognized the scale of the QuantumCT Engine’s
ambition and its potential to accelerate the quantum revolution for our state, region, and
the United States as a whole,” Yale University President Maurie McInnis says.
“I am so proud of this effort to develop real-world solutions that enrich our communities
and of the spirit of collaboration that it represents,” she adds. “Together with our partners at
UConn and across the state, we have been able to drive innovation and unleash economic
growth, while fulfilling Yale’s vital mission of research and education.”
Alongside industry partnerships and state support, sustained investments by UConn and
Yale have helped build the quantum ecosystem that this award will accelerate.
At Yale, this includes startups such as Quantum Circuits, co-founded by Robert Schoelkopf
and Michel Devoret — whose pioneering work in quantum computing earned him the 2025
Nobel Prize in Physics — and recently acquired by tech innovator D-Wave with plans to
double its workforce in New Haven.
Southern Connecticut State University (SCSU) also plays a critical role as the QuantumCT
Engine’s workforce lead, with its QNT (CSCU Center for Quantum and Nanotechnology)
serving as the optimal coordinator based on its successes in leading educational initiatives
and strong alliances with industry, community stakeholders, and IHEs throughout
Connecticut.
Through longstanding technical and education collaborations with Yale, UConn, and the CT
State Community College System, the QNT is a conduit to all academic institutions in the
state and to small and medium businesses including those in advanced manufacturing,
biotech, photonics, and other supply chain sectors.
“Southern Connecticut State University is more than ready to take the lead on workforce
development in Connecticut’s quantum ecosystem,” says Sandra Bulmer, interim
president of the university. “We are proud to be part of Connecticut’s ‘research triangle,’
along with Yale and UConn, serving as the support for the talent pipeline. Our mission is
grounded in access and opportunity, and the workforce piece of this effort enables us to
open up new frontiers in research and innovation to countless students across
Connecticut.”

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