State pledges $121 million for quantum technologies, New Haven tech incubator

The State of Connecticut will invest $121 million statewide in quantum technology, including support for QuantumCT, a nonprofit co-led by UConn and Yale.

Accelerating Connecticut’s position at the forefront of next-generation science, Gov. Ned Lamont last week pledged a $121 million statewide investment in quantum technology that includes support for QuantumCT, a nonprofit organization co-led by the University of Connecticut (UConn) and Yale University, as well as a first-of-its-kind quantum incubator in New Haven.

The new investment will further support QuantumCT — a public-private initiative that focuses on quantum research, innovation, and workforce development in Connecticut  — as it expands the state’s research capacity and applies cutting-edge quantum technologies to aerospace, defense, pharmaceuticals, and other pillars of state industry. The funding is part of broad-based efforts to solidify Connecticut as a national hub for quantum research, manufacturing, and workforce training.

At a press conference at Yale’s Kline Tower on Nov. 20, Lamont emphasized the state’s long history of scientific progress — driven in part by its research universities, especially Yale and UConn — in preparing the state for the next frontier of quantum technology.

“Connecticut has always been the most innovative state in the country,” Lamont said. “This is just in our DNA. This is why QuantumCT is leading the next quantum revolution.”

The center of the state’s latest investment is the development of the QuantumCT incubator, a deep-tech hub that will combine co-working and lab space with engineering facilities, quantum testbeds, and on-site technical support. The incubator, which will be built in New Haven, will give startups and university and industry researchers the ability to build, prototype, and refine quantum technologies in real time, according to Albert Green, president and CEO of QuantumCT.

The incubator reflects how the state’s research strengths, manufacturing capacity, and highly skilled workforce are converging to drive quantum innovation, said Daniel O’Keefe, Connecticut’s commissioner of economic development and chief innovation officer. He described the moment as Connecticut’s “Silicon Valley-like” opportunity to shape and lead a transformative sector.

In New Haven, O’Keefe said, quantum investment can help fuel economic growth in industries already central to the region. 

“Quantum has broad applications across, really, all industries, but we think it has particularly important implications for the discovery of new therapeutics,” he said. “And New Haven, being the heart of our biotech cluster, is particularly important in that regard.”

Following the press conference, Yale President Maurie McInnis (left) and Connecticut Governor Ned Lamont (center) chat with Robert Schoelkopf (second from left) and Steven Girvin, Yale physicists who have developed foundational technologies such as circuit quantum electrondynamics (cQED) and the transmon qubit, which underpin today’s most advanced quantum computers and have helped seed a generation of leaders now driving innovation across the nation’s public, private, and university institutions. Photo by Dan Renzetti.

As part of the plan to fuel economic growth, QuantumCT is developing a workforce development strategy that will help prepare Connecticut residents for jobs that will be shaped by quantum technologies.

The state funding accompanies more than $1 billion in investments from Yale and UConn, underscoring the coordinated push from Connecticut’s government and its public and private universities to realize economic and scientific gains for the state through advances in quantum research. The universities’ investments help grow quantum infrastructure on both campuses and contribute to the larger quantum ecosystem in the state. Their partnerships are coalescing as quantum breakthroughs edge closer to reshaping nearly every aspect of the nation’s economy, from powering smartphones and GPS, computing, and drug discoveries to major Connecticut industries including manufacturing, insurance , finance, and drug development.

Yale’s quantum investments are underway, including the ongoing construction of a new science and engineering complex, called the Physical Sciences and Engineering Building (PSEB), and the Advanced Instrumentation Development Center (AIDC). Yale’s Upper Science Hill Development complex is one of the largest capital commitments in Yale’s history, totaling more than 600,000 gross square feet.

“We are so excited to be in partnership with UConn and other schools throughout the state, the private sector, local leaders, community partners, and the state of Connecticut — all brought together by QuantumCT. This is a historic partnership,” said Yale President Maurie McInnis, who spoke at the press event along with UConn President Radenka Maric. “It is a collaboration that illustrates what universities do well: working together to help strengthen our communities, make each other more productive, and build the workforce of the future.”

Connecticut has already emerged as a leader in the critical quantum sector. Earlier this fall, QuantumCT was named one of 15 finalists for a National Science Foundation (NSF) grant administered through the Regional Innovation Engines program. The two-year grant, which is worth up to $15 million, has the potential for an additional eight years of funding totaling $160 million. 

In September, state officials designated New Haven as Connecticut’s first Innovation Cluster, a $50.5 million initiative to build new infrastructure and resources for the region’s quantum and biotech sectors. The investment from the Innovation Cluster initiative is part of the $121 million that Lamont pledged on Thursday. Including the $121 million investment,  the state will invest an additional $60 million contingent on the outcome of the NSF Regional Innovation Engines grant.

NSF previously awarded QuantumCT a $1 million development grant through UConn, which helped launch early quantum projects now underway at UConn, Yale, and partner institutions across the state. Connecticut also matched the NSF award with an additional $1 million, a part of the state’s overall $121 million funding commitment.

“By building shared infrastructure and training the next generation of innovators, we can ensure that quantum technologies take root and grow here in New Haven and throughout Connecticut,” said Mike Crair, vice provost for research at Yale. “These are incredibly promising areas of innovation, and this is a very exciting step forward for our city, the state, and the entire region.”

Lamont’s announcement builds on decades of pioneering quantum research at Yale, which has shaped the global trajectory of the field. Last month, Michel Devoret, the Frederick W. Beinecke Professor Emeritus of Applied Physics at Yale, who is now on faculty at the University of California-Santa Barbara, received the 2025 Nobel Prize in Physics for his groundbreaking work in quantum computing. Along with Yale professors Robert Schoelkopf and Steven Girvin, Devoret developed foundational technologies such as circuit quantum electrodynamics (cQED) and the transmon qubit. These breakthroughs underpin today’s most advanced quantum computers and have helped seed a generation of leaders now driving innovation across the nation’s public, private, and university institutions.

“The partnership between UConn and Yale is inspiring,” said New Haven Mayor Justin Elicker. “[The latest investment] is something that will help us as a state for years and years to come.” 

“In Connecticut, we say ‘make it here,’” added Elicker, who noted that New Haven is the second largest bioscience hub in New England. “It is clear that ‘make it here’ is not just a tagline, but it is the state backing up words with action.” 

Madeleine Simon | Yale News | 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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