Project Grant 2637684
- The National Science Foundation awarded the University of Maryland, College Park $150,000 on April 15, 2026, under the NSF Technology, Innovation, and Partnerships program (CFDA 47.084) to convene and execute a two-day national workshop on translating photonic quantum technology into deployable systems and commercial applications. The workshop addresses critical barriers to commercializing quantum integrated photonics: the absence of scalable, silicon-compatible sources of quantum light and...
- The National Science Foundation Directorate for Mathematical and Physical Sciences awarded the University of Maryland, College Park $195,997 on April 1, 2026, to support a workshop on quantum biotechnology designed to bridge innovation and impact in the field. The workshop will convene approximately 200 scientific leaders from the United States, Europe, and Australia to discuss advances in quantum technologies and identify the biomedical community's needs for improved sensing, reporting,...
- The National Science Foundation (NSF) awarded a $1,800,000 Project Grant under the Mathematical and Physical Sciences program (CFDA 47.049) to The Trustees of Princeton University to develop new quantum sensing tools for studying physical phenomena, structure, and composition of materials. The project, titled "QUSEC-TAQS: Nanoscale Covariance Magnetometry with Diamond Quantum Sensors," aims to use nitrogen vacancy (NV) centers in diamond as a large-scale quantum sensing platform to...
- This $1,634,839 Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences Program (CFDA 47.049) aims to revolutionize live-cell imaging by developing nanodiamond quantum sensors with exceptional sensitivity. The research, titled "QUSEC-TAQS: Nanodiamond Quantum Sensing for Four-Dimensional Live-Cell Imaging", will integrate nanodiamond quantum sensors with advanced light-sheet microscopy to achieve high spatiotemporal resolution and low...
- This Project Grant award of $999,994.00 from the National Science Foundation (NSF) Directorate for Mathematical and Physical Sciences (CFDA 47.049) supports the development of quantum-enabled interferometric imaging for astronomical observations at visible wavelengths. The University of Oregon, the awardee, will work with an interdisciplinary team to perform proof-of-concept experiments verifying the principles of a quantum-enhanced imaging system for astronomical applications. This project aims...
- This National Science Foundation (NSF) award under the Mathematical and Physical Sciences (CFDA 47.049) program provides $580,000 in funding to Rowan University to develop comprehensive quantum methodologies for modeling and designing molecular-scale quantum sensors with ultra-high sensitivity and long-lived electronic coherence. The key objectives are to: 1) Create new time-dependent nonequilibrium Green's function (NEGF) methods that incorporate multiconfigurational molecular electronic...
- This $500,000 federal Project Grant award from the National Science Foundation (NSF) Technology, Innovation, and Partnerships (TIP) program (CFDA 47.084) supports the development of the Quantum Sensing and Imaging Lab (Q-SAIL) at the University of California, Los Angeles (UCLA). Q-SAIL is developing high-performance quantum sensors for a variety of applications, including frequency metrology, fundamental physics, terahertz and hyperspectral imaging, based on two-dimensional arrays of trapped...
- The National Science Foundation awarded a $199,360 Project Grant to Mississippi State University under the Integrative Activities program (CFDA 47.083). The grant will support a workshop on quantum computing, information science, and engineering to be held from June 15, 2022 to May 31, 2023. The workshop aims to bring together over 50 researchers and administrators from Established Program to Stimulate Competitive Research (EPSCoR) states and territories to identify opportunities for their...
- This Project Grant award of $500,000 from the National Science Foundation's (NSF) Mathematical and Physical Sciences (CFDA 47.049) federal grant program supports the "Quantum Photonic Integration and Deployment (QUPID)" research project led by the University of Michigan. The goal is to develop groundbreaking quantum photonic integrated circuits (Q-PICs) that can bring spectroscopic quantum metrologies out of the laboratory and into real-world applications. The interdisciplinary QUPID...
- This Project Grant award from the National Science Foundation's Mathematical and Physical Sciences program (CFDA 47.049) supports a collaborative research effort to characterize the quantum information science and engineering (QISE) workforce and academic landscape in the United States. The $369,722 award to the Regents of the University of Colorado will fund three main activities over a period of three years: (1) a study analyzing the knowledge, skills, and abilities required for QISE...
CONFERENCE: QUANTUM IMAGING AND QUANTUM SENSING (QIQS) WORKSHOP -NONTECHNICAL DESCRIPTION QUANTUM SENSING HARNESSES THE UNIQUE PROPERTIES OF QUANTUM MECHANICS SUCH AS SUPERPOSITION AND ENTANGLEMENT TO ACHIEVE BETTER PERFORMANCE AND NEW SENSING MODALITIES BEYOND THE REACH OF CLASSICAL SENSORS. IN A SIMILAR AND PARTIALLY OVERLAPPING DIRECTION, QUANTUM IMAGING AIMS TO USE PHOTONS, ELECTRONS AND ATOMS, BE IT NATURAL OR ARTIFICIAL, TO BYPASS SENSITIVITY AND RESOLUTION LIMITS IMPOSED ON CLASSICAL IMAGING TECHNIQUES. RECENTLY, THERE HAS BEEN A SURGE IN INTEREST TO USE QUANTUM SENSING FOR BIOMEDICAL APPLICATIONS, BUT A LARGE PART OF THIS EFFORT HAS BEEN IN IDEAL LAB ENVIRONMENTS. HENCE, SIGNIFICANT BRAINSTORMING CAN INFORM THE NEXT STEPS TO FIND APPROACHES ON HOW TO ACCELERATE THE TRANSLATION OF FUNDAMENTAL IN-LAB QUANTUM SENSORS TO PRACTICAL DEPLOYED SYSTEMS, MIRRORING SOME OF THE TRANSLATION HAPPENING IN NAVIGATION AND TIMEKEEPING APPLICATIONS. THIS PROJECT WILL ORGANIZE A QUANTUM IMAGING AND QUANTUM SENSING WORKSHOP TO BRING TOGETHER INTERDISCIPLINARY EXPERTS SPANNING QUANTUM PHYSICISTS, BIOMEDICAL ENGINEERS, CLINICIANS AND END USERS, TO DISCUSS AND ROADMAP SUCH TRANSLATIONAL EFFORTS. THE INPUTS FROM THESE COMMUNITIES WILL HELP TO IDENTIFY THE MOST PROMISING OPPORTUNITIES FOR TRANSLATING QUANTUM SENSING TECHNOLOGIES INTO REAL-WORLD APPLICATIONS. PARTICIPANTS WILL EXAMINE WHERE QUANTUM APPROACHES CAN PROVIDE MEANINGFUL ADVANTAGES OVER EXISTING TECHNOLOGIES AND IDENTIFY THE SCIENTIFIC, ENGINEERING, AND INFRASTRUCTURE CHALLENGES THAT MUST BE OVERCOME FOR WIDESPREAD ADOPTION. THE WORKSHOP HAS THE POTENTIAL TO FORM NEW COLLABORATIONS, PROVIDE PROFESSIONAL OPPORTUNITIES AND EXPOSURE FOR GRADUATE STUDENTS, POSTDOCTORAL RESEARCHERS, AND EARLY-CAREER INVESTIGATORS, AND STRENGTHEN CONNECTIONS AMONG ACADEMIA, INDUSTRY, NATIONAL LABORATORIES, HEALTHCARE PROFESSIONALS, AND FEDERAL AGENCIES. TECHNICAL DESCRIPTION THIS PROJECT WILL CONVENE A TWO-DAY INTERDISCIPLINARY WORKSHOP FOCUSED ON QUANTUM SENSING AND BIOIMAGING, WITH PARTICULAR EMPHASIS ON IDENTIFYING RESEARCH DIRECTIONS THAT CAN ACCELERATE THE TRANSITION OF QUANTUM SENSING TECHNOLOGIES FROM LABORATORY DEMONSTRATIONS TO DEPLOYABLE BIOMEDICAL INSTRUMENTATION. THE WORKSHOP WILL BRING TOGETHER RESEARCHERS FROM ACADEMIA, NATIONAL LABORATORIES, INDUSTRY, FEDERAL AGENCIES, AND THE BIOMEDICAL COMMUNITY. IT WILL COMBINE KEYNOTE PRESENTATIONS, TECHNICAL SESSIONS, PANEL DISCUSSIONS, AND FACILITATED BREAKOUT SESSIONS TO EXAMINE KEY SCIENTIFIC AND ENGINEERING CHALLENGES, INCLUDING PERFORMANCE BENCHMARKING AGAINST CLASSICAL STATE OF THE ART, VALIDATION PROTOCOLS, INTEROPERABILITY WITH EXISTING BIOMEDICAL IMAGING WORKFLOWS, CALIBRATION METHODS, SHARED TESTBEDS, MANUFACTURABILITY, ENABLING HARDWARE PLATFORMS, STANDARDS, SOFTWARE, AND DATA INFRASTRUCTURE. DISCUSSIONS WILL ALSO CONSIDER TRANSLATIONAL PATHWAYS AND LESSONS FROM QUANTUM SENSING APPLICATIONS IN POSITIONING, NAVIGATION, AND TIMING. A PRINCIPAL OUTCOME OF THE WORKSHOP WILL BE A SET OF GUIDELINES OR ROADMAPS IDENTIFYING PRIORITY RESEARCH DIRECTIONS, BENCHMARK METRICS, ENABLING INFRASTRUCTURE, AND CROSS-SECTOR PARTNERSHIPS NEEDED IN THE NEAR TERM TO THE INTERMEDIATE TERM TO ACCELERATE QUANTUM SENSING TECHNOLOGIES TOWARD PRACTICAL SOCIETAL APPLICATIONS. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $40.0k | 8/4/26 |