Project Grant 80NSSC18K0910
- This Cooperative Agreement award of $1,000,000 from the National Science Foundation (NSF) Technology, Innovation, and Partnerships (CFDA 47.084) program supports the development of an advanced propellant-less propulsion system for small satellites by Field Propulsion Technologies Inc., a small business based in Aurora, Colorado. The project aims to create a prototype propulsion device utilizing a specialized metamaterial based on graphene composite that can generate thrust through unresolved...
- The National Science Foundation (NSF) awarded a $272,800 SBIR Phase I Project Grant to Morningbird Media Corporation to develop and test a prototype propulsion engine that utilizes electromagnetic energy to enable high-speed space travel. The goal is to create a fundamentally new approach to spacecraft propulsion that could lead to orders of magnitude faster space travel compared to current chemical propulsion systems. The key technical objectives are to develop a complex dielectric material and...
- The National Aeronautics and Space Administration (NASA) awarded Ultra Safe Nuclear Corporation - Technologies (USNC-Space) a $124,592.39 Project Grant under the Space Technology program (CFDA 43.012) to design a compact radioisotope-electric-propulsion spacecraft powered by a novel chargeable atomic battery (CAB). The CAB technology aims to enable spacecraft delta-V capabilities on the order of 100 km/s with a power system specific mass of 5-8 kg/kWe. The award period runs from March 8, 2021...
- This National Science Foundation (NSF) Technology, Innovation, and Partnerships (CFDA 47.084) Project Grant award of $274,969 to Juno Propulsion Inc. will develop a new satellite thruster using rotating detonation combustion (RDC) and non-toxic propellants. The thruster is projected to operate with significantly higher specific impulse than current solutions, leading to a 100% increase in satellite lifespan in low Earth orbit. This will permit improvements such as a 40% increase in camera...
- This $265,965 Project Grant award from the National Science Foundation's (NSF) Technology, Innovation, and Partnerships program (CFDA 47.084) supports research and development by Nearstar Fusion Inc., a for-profit organization, on a new approach to fusion energy for grid-based electric power. The project aims to perform computational modeling, analytical calculations, and design work to de-risk and establish a point design for a "hypervelocity gradient field fusion" concept. This...
- The National Science Foundation (NSF) awarded a $275,000 Project Grant under the NSF Technology, Innovation, and Partnerships (TIP) program (CFDA 47.084) to develop a novel "Pulsar Rocket Engine" that utilizes valve-pulsed detonation technology. The project aims to demonstrate the advantages of using pulsed reactant detonations to increase engine thrust and reduce backflow pressure to the turbo pumps, allowing for significantly greater mass flow rates and improved engine efficiency....
- The Accelerating Space Science with Nuclear Technology grant, awarded by the National Aeronautics and Space Administration (NASA) under the Space Technology (CFDA 43.012) program, supports a meeting to stimulate convergence between the nuclear power/propulsion and space science communities. The goal is to explore ways to leverage nuclear technology outputs to improve space science mission capabilities and accelerate the development of relevant nuclear technologies. The $105,712.92 award, made on...
- This three-year, $345,000 project grant from the National Science Foundation's Mathematical and Physical Sciences program will support collaborative research between the University of Michigan-Ann Arbor and Marquette University to advance understanding of novel plasma physics processes in antimatter experiments. The researchers will develop new kinetic theory and molecular dynamics simulations to study electron and positron compression, antiproton cooling, and mixing/recombination of antiprotons...
- This Cooperative Agreement award, funded by the Advanced Research Projects Agency - Energy (ARPA-E), supports the development of a transformational technology for transmuting the U.S. minor actinide and selected fission product stockpile. The $2,864,750 project, awarded to the Massachusetts Institute of Technology (MIT) on September 8, 2025, proposes a subcritical fission blanket system utilizing a liquid lead-based nanofluid to carry the transmutation targets. Key innovations include...
- This $250,000 Project Grant award from the NASA Science Mission Directorate (SMD) Federal Grant Program (CFDA 43.001) supports the development of an innovative directed energy sail propulsion concept. The research aims to advance transformational in-space transportation capabilities for rapid and efficient solar-system-wide access and interstellar missions. The awarded effort will address this through fundamental physics research, system-level computational performance evaluation, and...
CURRENT STATE OF THE ART IN-SPACE PROPULSION SYSTEMS BASED ON CHEMICAL OR ION PROPELLANTS FAIL TO MEET REQUIREMENTS OF 21ST CENTURY SPACE MISSIONS. ANTIMATTER IS A CANDIDATE MECHANISM FOR A PROPULSION SYSTEM THAT COULD TRANSPORT HUMANS AND/OR ROBOTIC SYSTEMS WITH DRASTICALLY REDUCED TRANSIT TIMES PROVIDING QUICKER SCIENTIFIC RESULTS INCREASING THE PAYLOAD MASS TO ALLOW MORE CAPABLE INSTRUMENTS AND LARGER CREWS AND REDUCING THE OVERALL MISSION COST. UNFORTUNATELY PREVIOUS PROPULSION CONCEPTS RELIED ON UNREALISTIC AMOUNTS OF TRAPPED ANTIMATTER - ORDERS OF MAGNITUDE AWAY FROM ANY NEAR-TERM CAPABILITY. THE GOAL OF THIS EFFORT IS TO DETERMINE THE FEASIBILITY OF A (TRL 1-2) RADIOISOTOPE POSITRON CATALYZED FUSION PROPULSION CONCEPT THAT DOES NOT RELY ON TRAPPED ANTIMATTER. SUCH A TRANSFORMATIVE TECHNOLOGY INSPIRES AND DRIVES FURTHER INNOVATION WITHIN THE AEROSPACE COMMUNITY AND CAN BE APPLIED TO A RELEVANT MISSION - THE BULK RETRIEVAL OF AN ENTIRE ASTEROID INTO TRANSLUNAR SPACE - A MISSION OF GREAT SCIENTIFIC AND COMMERCIAL INTEREST (E.G. ASTEROID MINING). THE IDEA OF HARNESSING RESOURCES FROM ASTEROIDS GOES BACK MORE THAN A CENTURY TO TSIOLKOVSKY. FUNDAMENTALLY FOR ASTEROID MINING TO BECOME FINANCIALLY VIABLE THE COST OF THE RETRIEVAL SPACECRAFT MUST BE LESS THAN THE VALUE GAINED FROM THE ASTEROID. THEREFORE DEVELOPING TECHNOLOGY (E.G. EFFICIENT PROPULSION SYSTEMS) THAT DECREASES THE MASS AND COMPLEXITY OF THE RETRIEVAL SPACECRAFT MUST BE A PRIORITY.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $125.0k | 5/23/18 | ||
| Not listed | Not listed | $125.0k | 5/23/18 |