Project Grant 2534655
- This federal Project Grant award, provided by the National Science Foundation (NSF) under the Computer and Information Science and Engineering (CFDA 47.070) program, aims to support the development of a verifiable quantum compiler that integrates formal methods to enable fault-tolerant quantum computing. The $500,000 award, with a period of performance from September 1, 2024 to August 31, 2028, will fund research to optimize the translation of quantum algorithms into fault-tolerant...
- Federal Project Grant Award Summary This collaborative research project, funded by the National Science Foundation's (NSF) Office of Advanced Cyberinfrastructure under the Computer and Information Science and Engineering (CISE) program (CFDA 47.070), represents a $471,864 investment in quantum computing workforce development. Awarded to the University of California, San Diego on August 15, 2025, with a completion date of July 31, 2029, the project delivers an integrated training platform...
- Federal Grant Award Summary The National Science Foundation's Division of Information and Intelligent Systems awarded $600,000 through the Computer and Information Science and Engineering program (CFDA 47.070) to the University of California, Irvine for a three-year project (July 1, 2026–June 30, 2029) titled "Quantum Algorithms for Constructing Ground and Gibbs States." This project develops and analyzes quantum algorithms designed to prepare ground states and thermal (Gibbs) states...
- Federal Grant Award Summary The National Science Foundation's Division of Information and Intelligent Systems awarded a CAREER grant totaling $477,555 to the University of Arizona (April 1, 2026 – March 31, 2031) under the Computer and Information Science and Engineering program (CFDA 47.070). The project, titled "SQALE: Scalable Quantum Architectures with LDPC Error-Correction," develops scalable solutions for quantum error correction by networking multiple small quantum processors to...
- Federal Project Grant Award Summary The National Science Foundation's Division of Information and Intelligent Systems awarded a $412,008 CAREER grant to the University of Texas at Austin on September 15, 2026, under the Computer and Information Science and Engineering program (CFDA 47.070). The project, "Co-Designing Compilers and Architectures for High-Performance and Scalable Fault-Tolerant Quantum Computing," extends through August 31, 2031, and addresses critical limitations in...
- Federal Grant Award Summary The University of California, San Diego received a $468,145 Project Grant from the National Science Foundation's Division of Information and Intelligent Systems under the Computer and Information Science and Engineering program (CFDA 47.070) to conduct research on quantum advantage in low-depth quantum circuits. The award period runs from April 1, 2026 through March 31, 2031. The research project will develop new mathematical techniques and lower bound methods to...
- This Project Grant award of $500,000 from the National Science Foundation (NSF) under the Mathematical and Physical Sciences (CFDA 47.049) federal grant program aims to accelerate the development of fault-tolerant quantum computing. The project, awarded to the University of California, Los Angeles (UCLA) on December 15, 2024, focuses on co-designing quantum error-correcting (QEC) codes and the hardware architecture to support them, specifically targeting the trapped-ion quantum computing...
- Federal Project Grant Award Summary Duke University's Office of Research Administration received a $450,000 project grant from the National Science Foundation (NSF) Division of Physics under the Mathematical and Physical Sciences program (CFDA 47.049), awarded September 1, 2025, with completion targeted for August 31, 2028. The award supports fundamental research on fault-tolerant quantum error correction methodologies that advance beyond current foliation-based approaches. The research...
- This Project Grant award from the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) Federal Grant Program (CFDA 47.070) provides $600,000 to the University of Arizona to develop practical quantum error correction codes and advanced decoding methods to overcome scalability challenges in quantum computing. The key products and services to be delivered under this 3-year award (1/1/2025 - 12/31/2027) include: Designing a new class of quantum low-density...
- Federal Project Grant Award Summary The National Science Foundation's Division of Computer and Network Systems has awarded $134,997 to UCLA under the Computer and Information Science and Engineering (CISE, CFDA 47.070) program to support collaborative research on optimized detection and localization of events in quantum sensor networks (QSNs). Initiated October 1, 2025, and extending through September 30, 2029, this project addresses fundamental scientific challenges in developing efficient...
The National Science Foundation's Division of Information and Intelligent Systems awarded a $600,000 Project Grant to the University of California, San Diego under the Computer and Information Science and Engineering program (CFDA 47.070) for the period July 1, 2026 through June 30, 2029. The project, titled "A Heterogeneous System Approach Toward Early Fault-Tolerant Quantum Computing," develops innovative quantum error correction (QEC) methodologies to advance practical quantum computing systems. Rather than applying uniform error correction schemes across entire quantum machines, the research delivers a heterogeneous architectural framework that combines multiple specialized error-protection techniques optimized for distinct computational roles, thereby enabling meaningful quantum error correction capabilities without the prohibitive hardware costs of fully scalable, fault-tolerant systems. The award funds three integrated research thrusts that collectively deliver system-level design principles, compiler infrastructure, and evaluation frameworks. The first thrust establishes architectural principles including hierarchical quantum memory designs, hybrid compute schemes that combine encoded and bare-qubit operations, and hardware layout strategies that manage communication overhead. The second thrust develops compiler infrastructure that bridges quantum programs to heterogeneous architectures through code-aware logical gate synthesis, inter-code conversion protocols, and latency-aware qubit mapping and scheduling. The third thrust builds evaluation frameworks to characterize system performance. These deliverables position quantum computing research to transition from the noisy intermediate-scale quantum era toward practical applications in drug discovery, materials design, and secure communication.Federal Project Grant Award Summary
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $600.0k | 6/30/26 |