Project Grant 2507947
- This $250,000 Project Grant award from the National Science Foundation's Engineering program (CFDA 47.041) will support research at George Mason University to develop an automated framework, named SPV, to efficiently synthesize, profile, and verify quantum circuits. The project aims to close the gap between quantum hardware and quantum algorithms by creating a "quantum EDA (electronic design automation)" framework, similar to the tools that revolutionized classical silicon-based...
- 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...
- This $400,000 Project Grant award from the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) program (CFDA 47.070) will fund collaborative research to develop scalable quantum computing systems. The project aims to interconnect multiple quantum processing units (QPUs) with limited qubit capacity into a scalable "virtual quantum machine" (VQM) with far greater qubit capabilities. The research will investigate fundamental qubit entanglement and...
- This $250,000 Project Grant from the National Science Foundation (NSF) Directorate for Mathematical and Physical Sciences (CFDA 47.049) supports research at the University of Texas at El Paso (UTEP) to investigate methods for efficiently creating entanglement between multiple qubits for quantum computing. The project aims to develop new multi-qubit entangling gates that can reduce the complexity of quantum circuits and expand the practical applications of current quantum hardware, which is...
- This Project Grant award from the National Science Foundation (NSF) Computer and Information Science and Engineering (CISE) Federal Grant Program (CFDA 47.070) provides $500,000 over 4 years to the University of California, Los Angeles (UCLA) to develop a verifiable quantum compiler that integrates formal methods with quantum computing. The project aims to advance fault-tolerant quantum computing by automating the generation of fault-tolerant quantum programs and ensuring their accuracy...
- This $540,000 Project Grant awarded by the National Science Foundation (NSF) Computer and Information Science and Engineering (CISE) Federal Grant Program supports the development of a comprehensive framework to design and operate quantum networks with maximum efficiency. The project aims to overcome the challenges of current noisy, error-prone, and inefficient quantum hardware by creating intelligent control policies that are co-designed with the underlying hardware. This work will enable...
- The National Science Foundation (NSF) awarded a $149,999 Project Grant under the Computer and Information Science and Engineering (CFDA 47.070) program to the Florida Institute of Technology (Florida TECH) to develop a hardware-accelerated framework for benchmarking quantum-classical computing systems. The project aims to create a unified platform for deploying, testing, and benchmarking hybrid algorithms that leverage both classical and quantum processing components. This aligns with the...
- This Project Grant award from the National Science Foundation's Engineering Program (CFDA 47.041) will provide $370,974 from August 1, 2025 to July 31, 2028 to support research aimed at advancing the understanding of quantum materials. The research will focus on developing new models and methods for designing quantum materials by linking macroscopic continuum theory with quantum field, electric field, and magnetic field interactions. This approach aims to improve properties like...
- This $400,000 NSF Engineering Project Grant (CFDA 47.041) aims to develop the QDREAM framework to support quantum dot device autotuning research. The key products and services to be delivered include: Device-physics-based "cold start" simulations that combine finite element electrostatic modeling with a quantum dot model to simulate untuned quantum dot devices. An FPGA-based quantum dot device emulator that can take real voltages and output a charge sensor signal in real-time. A series...
- The National Science Foundation (NSF) awarded a $1,149,999 Project Grant under the Computer and Information Science and Engineering (CFDA 47.070) Federal Grant Program to the University of Massachusetts (UMass) Amherst. This 3-year grant, effective July 1, 2024, will fund the development of an open-source ecosystem of modeling tools for quantum hardware. The project aims to democratize access to quantum technology by creating user-friendly tools that allow researchers to model quantum systems...
This Project Grant award of $248,242 from the National Science Foundation's Engineering (CFDA 47.041) program supports the development of an automated framework, named SPV, to efficiently synthesize, profile, and verify quantum circuits. The project aims to close the gap between quantum hardware and quantum algorithms by creating a "quantum EDA (electronic design automation) framework", similar to how EDA revolutionized classical silicon-based hardware design. The research will be conducted by the University of Texas at Dallas, a prominent public research university that frequently collaborates with federal agencies on advanced research and development projects. The overall goal is to enable the scalable design of quantum computing hardware and software to help domain experts leverage the power of quantum computers for their applications.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $248.2k | 8/18/25 |