Opportunity ID: 345509

General Information

Document Type: Grants Notice
Funding Opportunity Number: W911NF-23-S-0004
Funding Opportunity Title: BROAD AGENCY ANNOUNCEMENT FOR Entangled Logical Qubits (ELQ)
Opportunity Category: Discretionary
Opportunity Category Explanation:
Funding Instrument Type: Cooperative Agreement
Grant
Other
Procurement Contract
Category of Funding Activity: Science and Technology and other Research and Development
Category Explanation:
Expected Number of Awards: 100
Assistance Listings: 12.431 — Basic Scientific Research
Cost Sharing or Matching Requirement: No
Version: Synopsis 1
Posted Date: Jan 23, 2023
Last Updated Date: Jan 23, 2023
Original Closing Date for Applications: Mar 21, 2023 Proposals: 4:00 PM Eastern Time on: 21 March 2023
See Section II. D. 4 for additional information.
Current Closing Date for Applications: Mar 21, 2023 Proposals: 4:00 PM Eastern Time on: 21 March 2023
See Section II. D. 4 for additional information.
Archive Date: Apr 20, 2023
Estimated Total Program Funding:
Award Ceiling:
Award Floor:

Eligibility

Eligible Applicants: Others (see text field entitled “Additional Information on Eligibility” for clarification)
Additional Information on Eligibility: Eligible applicants under this BAA include Institutions of Higher Education (foreign and domestic), nonprofit organizations, and for-profit concerns (large and small businesses). Proposals are encouraged from Historically Black Colleges and Universities (as determined by the Secretary of Education to meet requirements of Title III of the Higher Education Act of 1965, as amended (20 U.S.C. §1061)) and from Minority Institutions defined as institutions “whose enrollment of a single minority or a combination of minorities exceeds 50 percent of the total enrollment.” [20 U.S.C. § 1067k(3) and 10 U.S.C. § 2362]. However, no funds are specifically allocated for HBCU/MI participation.

Additional Information

Agency Name: Dept of the Army — Materiel Command
Description:

Quantum computing (QC) has the potential to transcend classical limits of computing in applications of interest to the Intelligence Community (IC) and the DoD. Qubits—the indivisible units or “bits” of quantum information within a quantum computer—exhibit quantum coherence[1] and entanglement[2],[3] properties but are also subject to noise and couplings to the environment, all of which weaken coherence and lead to the loss of quantum information during computation and thus produce computational errors. Fortunately, qubits may be organized into computational units called logical qubits (LQs) that work to preserve quantum information and coherence by detecting errors within their boundaries, identifying corrections, and admitting repairs, all while maintaining fault tolerance.1,2 Theoretical and experimental advances in quantum error correction2 (QEC) have led to several demonstrations of fault-tolerant (FT) logical qubits in recent years across different hardware platforms. A further step towards universal, fault-tolerant quantum computing2 (UFTQC), however, comes by engaging separate LQs into entanglement, all while sustaining coherence and the protections of fault tolerance.

Entangled Logical Qubits (ELQ) is a four-year foundational research program directed at generating high-fidelity entanglement between two error-corrected LQs in a fully FT manner, and utilizing it to achieve logical state teleportation with high success. These accomplishments will lay the cornerstone for realizing the full potential of QC and make a profound advance on the path to UFTQC. The program is divided into four (4) phases, outlined in Table 1, Table 2, and Table 4, and described in detail in Section A.3. Proposals covering all four Phases are being solicited under this BAA; proposals covering fewer may not receive full consideration.

Broadly, ELQ seeks to develop and demonstrate schemes that preserve FT properties throughout an operational sequence that incorporates LQ entanglement. Importantly, the schemes must also exhibit modularity, where the entangled ensemble is built from, and separable into, decoupled, independently-operable LQs residing on the same physical platform. Modularity is also reinforced by the Program’s structure, with LQs being established separately during the first through third years of the Program before proceeding with entangling operations. We define modularity in Section A.2.1.2 and Box A in connection with architectural requirements.

While limited theoretical work exists, FT logical entanglement from the engagement of separate LQs is a frontier topic providing new ground for theory and practice to meet, cooperate, and evolve toward an objective critical to UFTQC. Achieving high-fidelity, maximally-entangled logical states, as evidenced, for example, by teleportation3 success rates of 95% or higher, is an ambitious yet attainable target in consideration of continuing advances in state-of-the-art performance of quantum hardware and related controls. The challenges—spanning developments of hardware, software, QEC protocols, benchmarking protocols—awaiting this deeper excursion into QC will be considerable. Successful teams will be interdisciplinary, adept at working at the interfaces between the disciplines involved, and capable of executing ground-breaking results.

Link to Additional Information:
Grantor Contact Information: If you have difficulty accessing the full announcement electronically, please contact:

Technical Point of Contact:

Dr. T.R. Govindan

Army Research Office

Email Address: t.r.govindan.civ@army.mil
Email:usarmy.rtp.devcom-arl.mesg.qcbox@army.mil

Version History

Version Modification Description Updated Date

Folder 345509 Full Announcement-W911NF-23-S-0004 ELQ BAA -> W911NF-23-S-0004 ELQ BAA Final.pdf

Packages

Agency Contact Information: Technical Point of Contact:
Dr. T.R. Govindan
Army Research Office
Email Address: t.r.govindan.civ@army.mil
Email: usarmy.rtp.devcom-arl.mesg.qcbox@army.mil
Who Can Apply: Organization Applicants

Assistance Listing Number Competition ID Competition Title Opportunity Package ID Opening Date Closing Date Actions
12.431 PKG00279356 Jan 23, 2023 Mar 21, 2023 View

Package 1

Mandatory forms

345509 RR_SF424_5_0-5.0.pdf

345509 RR_OtherProjectInfo_1_4-1.4.pdf

345509 RR_PersonalData_1_2-1.2.pdf

345509 RR_KeyPersonExpanded_4_0-4.0.pdf

345509 AttachmentForm_1_2-1.2.pdf

345509 Project_Abstract_1_2-1.2.pdf

Optional forms

345509 SFLLL_2_0-2.0.pdf

345509 RR_SubawardBudget_3_0-3.0.pdf

345509 RR_Budget_3_0-3.0.pdf

2025-07-10T04:37:33-05:00

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