This $600,000 Project Grant award from the National Science Foundation (NSF) Division of Physics supports research to develop a high-density, axially homogeneous helicon plasma source for the AWAKE (Advanced Proton Driven Plasma Wakefield Acceleration Experiment) project at CERN. The research aims to qualify the helicon plasma generation technology for application in next-generation particle accelerator systems, which could significantly reduce the size and cost of future linear accelerators...
This Project Grant from the National Science Foundation, under the Mathematical and Physical Sciences program (CFDA 47.049), provides $134,481 to Saint Michael's College for theoretical development of reduced plasma kinetic models that allow simultaneous treatment of charged particles and electromagnetic fields. The award supports derivation of new theoretical structures for reduced plasma models, including gyrokinetic plasma models, that preserve exact conservation properties and enable...
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 $850,000 National Science Foundation project grant supports research at the University of Colorado Boulder to advance understanding of particle acceleration in plasmas driven by lasers. Specifically, the three-year award will fund simulation and experimental studies of optical field ionization-generated plasma channels for particle acceleration using laser wakefield acceleration. Researchers will conduct accurate simulations of plasma channel formation, characterize generated...
This National Science Foundation (NSF) Division of Physics Project Grant award of $340,000 supports collaborative research between Columbia University and the University of Wisconsin-Madison to advance the understanding of microscale plasma processes in shock and turbulent environments. The project aims to develop physics-based models of kinetic, non-equilibrium processes in astrophysical plasmas, focusing on particle heating/acceleration in shocks and thermodynamics/transport driven by...
This National Science Foundation (NSF) CAREER award, under the Mathematical and Physical Sciences Federal Grant Program (CFDA 47.049), provides $276,489 to Cornell University to study the physics of turbulent plasma in a laboratory setting. The research program will develop a new platform for producing magnetized plasma turbulence and use advanced diagnostics, such as Faraday rotation imaging and Thomson scattering, to characterize the transition from laminar to turbulent plasma. The project...
Radiasoft LLC was awarded a $202,034 Project Grant from the Department of Energy Office of Science on June 27, 2022 to develop conformal mapping techniques for high-speed simulations of structure wakefield accelerators. The grant is part of the Office of Science Financial Assistance Program (CFDA 81.049), which supports basic research to deliver scientific discoveries and tools that transform understanding of nature and advance U.S. energy security and economic competitiveness. Under the...
This $450,000 project grant from the National Science Foundation (NSF) Division of Physics will fund the development of machine learning-augmented density functional theory (DFT) tools to enable faster and more accurate quantum simulations of warm dense plasmas. Under the Mathematical and Physical Sciences program (CFDA 47.049), the University of Rochester will receive funding from August 15, 2022 to July 31, 2025. The project aims to advance finite-temperature exchange-correlation functionals...
The University of Nebraska was awarded a $480,000 project grant from the National Science Foundation Division of Physics under the Mathematical and Physical Sciences program (CFDA 47.049). The three-year award will support research titled "HIGH FIDELITY FLUID-KINETIC HYBRID MODELING OF INTENSE, SHORT PULSE LASER PLASMA INTERACTIONS" from August 2021 through July 2024. The university will conduct research to advance understanding of major problems in plasma physics through developing...
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...