Closed · W911NF-23-S-0004 · CFDA 12.431 · Discretionary
BROAD AGENCY ANNOUNCEMENT FOR Entangled Logical Qubits (ELQ)
Federal grant opportunity posted by Dept of the Army -- Materiel Command, cataloged on Grants.gov.
- Varies
- Award range
- Closed
- Status
- March 21, 2023
- Close date
- 100
- Expected awards
The verdict
BROAD AGENCY ANNOUNCEMENT FOR Entangled Logical Qubits (ELQ) is a closed discretionary listing from Dept of the Army -- Materiel Command that offered Varies by applicant across 100 expected awards. Future funding cycles may be published under the same CFDA number.
- Varies
- award range
- Closed
- application status
- 100
- expected awards
- 12.431
- CFDA program
Opportunity snapshot. This Grants.gov announcement - BROAD AGENCY ANNOUNCEMENT FOR Entangled Logical Qubits (ELQ) - is cataloged under number W911NF-23-S-0004 and tied to CFDA assistance listing 12.431, posted by Dept of the Army -- Materiel Command. Grants.gov currently shows the opportunity as closed, first posted on January 23, 2023. The funding category is Discretionary, delivered as a procurement contract.
Award economics. The award range on file is Varies by applicant. It expects to issue 100 awards. Cost sharing is not required, so applicants do not need to commit matching funds to be competitive on this opportunity. Federal award ranges are often upper bounds; actual allocations reflect program appropriations, the strength of the applicant pool, and the evaluation committee's scoring.
Deadline and action path. This opportunity closed on March 21, 2023. Future funding cycles may be published under the same CFDA number, so monitoring the parent program page is the most reliable way to catch re-announcements. Every Grants.gov submission requires an active SAM.gov registration and a Unique Entity ID. Review the Eligibility section below carefully, federal eligibility categories (nonprofit, state or local government, tribal, individual, educational institution, small business) have distinct registration and reporting requirements. Pre-application outreach to the listed agency contact is permitted and often welcomed, it helps clarify scope and scoring priorities. Before acting on the deadline or award figures above, verify them directly on the official Grants.gov listing, amendments can change dates and amounts after this page was last refreshed.
Award Range
Varies by applicant
Close Date
March 21, 2023
Proposals: 4:00 PM Eastern Time on: 21 March 2023 See Section II. D. 4 for additional information.
Posted
January 23, 2023
Expected Awards
100
Instrument
Procurement Contract
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.
Eligibility
Grants.gov lists this opportunity under eligibility category code 25. These codes correspond to applicant types (state/local government, tribal organization, nonprofit, educational institution, individual, small business, etc.) defined in Grants.gov's own eligibility reference. See the current Grants.gov eligibility categories or check the official listing below for this opportunity's exact eligibility statement.
Official Listing on Grants.gov
View full details, application forms, and submission instructions.
Agency Contact
Technical Point of Contact: Dr. T.R. Govindan Army Research Office Email Address: t.r.govindan.civ@army.mil
Key Dates
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