QuEra Computing Opens Office in Discovery District Maryland

QuEra Computing Maryland
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Insider Brief

  • QuEra Computing will open an office in Discovery District Maryland as part of Maryland’s Capital of Quantum initiative.
  • The move builds on QuEra’s agreement with the University of Maryland’s National Quantum Laboratory, giving researchers cloud access to its neutral-atom systems, including the 256-qubit Aquila platform.
  • QuEra will join a growing quantum hardware cluster near UMD and federal research partners including NIST, NASA Goddard and the Army Research Laboratory.

PRESS RELEASE — QuEra Computing, the Boston-based leader in neutral-atom quantum computing, will open an office in Discovery District Maryland, joining the Capital of Quantum’s expanding roster of quantum companies.

The move builds on an agreement between QuEra and the University of Maryland‘s National Quantum Laboratory (QLab) that gives QLab researchers cloud access to QuEra’s quantum systems, including its Aquila platform, for research and education.

“We are excited to offer our user community access to QuEra‘s neutral atom-based systems. This will allow scientists, educators, and entrepreneurs to develop and test hands-on quantum applications with up to 256 qubits offered by this quickly developing hardware platform,” said Norbert Linke, Director of QLab, the National Quantum Laboratory at the University of Maryland.

Introducing TQI 2.0Introducing TQI 2.0

Discovery District Maryland (DDM) is the physical home of the Capital of Quantum – Maryland’s statewide initiative to expand the region’s quantum ecosystem – and a hub for a growing list of quantum hardware developers. Located steps from the University of Maryland campus, DDM also sits near key federal partners such as NIST, NASA Goddard and the Army Research Laboratory. QuEra‘s neutral-atom architecture adds a new qubit modality to a portfolio that already spans superconducting, trapped-ion and silicon approaches.

QuEra‘s decision to establish an office in Discovery District Maryland strengthens our growing quantum hardware cluster and brings a powerful new neutral-atom platform into Maryland’s expanding ecosystem,” said Corey Stambaugh, Director of the Capital of Quantum. “This is exactly the kind of industry–university partnership we’re building—connecting leading companies with UMD talent, research capabilities, and nearby federal partners to accelerate innovation and grow the region’s quantum economy.”

“Neutral-atom technology is advancing at a remarkable pace, and putting Aquila in the hands of QLab’s researchers, educators, and students is exactly how we help accelerate that progress,” said Yuval Boger, Chief Commercial Officer of QuEra Computing. “We’re proud to support the University of Maryland‘s quantum community, and establishing an office in Discovery District Maryland deepens our commitment to the region’s thriving quantum ecosystem.”

Neutral atoms have emerged as one of the leading approaches to quantum computing. Because atoms of a given element are naturally identical and can be arranged in large, dense arrays, the technology offers a natural path to increasing qubit counts. Recent public demonstrations have also shown several of the key ingredients needed for fault-tolerant operation, including logical qubits, error correction, and large-scale atom control. Neutral-atom systems do not require the dilution refrigerators used by some other quantum computing platforms, relying instead on lasers, optical systems, and vacuum chambers operating at room temperature. And because atoms can be rearranged during a computation, qubits are not limited to fixed wiring patterns. This dynamic connectivity can reduce routing overhead and, for some algorithms, allow computations to be implemented with significantly fewer operations.

QuEra‘s office will be located in DDM’s Discovery Center, the district’s anchor building already home to Microsoft, Quantum Motion, IQM and an increasing concentration of quantum firms. The facility provides quantum companies with direct access to the University of Maryland‘s talent pool and its federal research partners, and features flex-work space, built-to-suit labs and office space.

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MENTIONED IN THE ARTICLE

QuEra Computing
CompanyUnited States · 11-50 FTEs

QuEra Computing uses research on neutral atoms, developed at Harvard University and the Massachusetts Institute of Technology, as the basis for a scalable, programmable quantum computer solution. QuEra’s quantum processing technology is based on trapping, energizing, and shuttling atoms with laser beams.

University of Maryland
UniversityUnited States · 10001+ FTEs

The University of Maryland, College Park, situated in Maryland, is a public research university. Established in 1856, it holds the position of being the main campus of the University System of Maryland. It also holds the distinction of being the biggest university in both the state and the Washington metropolitan area.

National Institute of Standards and Technology (NIST)
GovernmentUnited States · 1001-5000 FTEs

The National Institute of Standards and Technology (NIST), a non-regulatory federal agency within the U.S. Department of Commerce. NIST's mission is to promote U.S. innovation and industrial competitiveness by advancing measurement science, standards, and technology in ways that enhance economic security and improve the quality of life. In Oct, 2022, A NIST team at JILA demonstrated an entangled matter-wave interferometer surpassing the standard quantum limit in sensing accelerations. In Nov 2022, NIST researchers achieved unprecedented accuracy in radio frequency signal synthesis. In Dec, 2022) NIST scientists and collaborators explored innovative techniques in four studies to detect dark matter. In Jan, 2023, A NIST-led team showcased integrated photonics circuits using quantum dots for optical quantum information applications. In Jan, 2023, NIST researchers and partners utilized ultracold atoms to simulate space-time curvature, shedding light on the quantum hall effect and topological insulators. In Sep, 2023, NIST published the Single-Photon Sources and Detectors Dictionary to enhance understanding and communication within the quantum and single-photon communities. In July 2024 NIST launched the "Migration to Post-Quantum Cryptography (PQC)" project under the National Cybersecurity Center of Excellence (NCCoE). Harvest Now Decrypt Later (HNDL) attacks pose a significant cybersecurity threat, where data stolen now can be decrypted by future quantum computers. To combat this, the consortium, which includes Post-Quantum and major tech companies like AWS, Cisco, and Microsoft, aims to develop and implement PQC solutions to secure IT systems and critical infrastructure from HNDL attacks and future quantum threats.

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