Project Grant 2310548
- This three-year, $148,578 project grant from the National Science Foundation's Mathematical and Physical Sciences Directorate under the CFDA 47.049 program will support the development of an open-source community code for multi-scale, multi-physics problems in astrophysics and gravitational physics. Specifically, the awardee Cornell University will complete development of the Elements code using discontinuous Galerkin methods and task-based parallelism to solve dynamical Einstein equations on...
- This Project Grant from the National Science Foundation's Mathematical and Physical Sciences program (CFDA 47.049) provides $446,421 to improve modeling of gravitational wave detections through active galactic nuclei channels. The award to the Research Foundation of the City University of New York at Borough Manhattan Community College, from September 2022 to August 2025, will support rewriting and publicly releasing a Monte Carlo code developed to study compact object mergers in galactic...
- This Project Grant from the National Science Foundation will fund research at the University of Mississippi to advance understanding of compact binary formation through gravitational-wave observations. With $228,443 in funding over three years from August 2022 to July 2025, the award supports development of computational models and software codes to probe the full evolutionary history of precessing binary black holes on both quasi-circular and eccentric orbits. Researchers will also explore...
- The National Science Foundation awarded a $148,729 Project Grant to the California Institute of Technology under the Mathematical and Physical Sciences federal grant program (CFDA 47.049) to develop an open-source community computational code for multi-scale, multi-physics problems in astrophysics and gravitational physics. The code, known as Elements, will utilize discontinuous Galerkin methods and task-based parallelism to solve dynamical Einstein equations on exascale computing...
- This $210,000 Project Grant awarded by the National Science Foundation (CFDA 47.049 - Mathematical and Physical Sciences) supports research by the University of Virginia to advance gravitational wave physics and astrophysics. The key goals are to: (i) Compute persistent gravitational wave signals from binary black hole mergers using new conservation law models, and assess their detection prospects. (ii) Improve modeling of the gravitational wave memory effect to better understand its...
- This Project Grant from the National Science Foundation Office of Advanced Cyberinfrastructure, under the Computer and Information Science and Engineering federal grant program (CFDA 47.070), provides $136,167 to support the continued development of the open-source Einstein Toolkit ecosystem. The awardee, consisting of a collaboration between the University of Idaho and four other institutions, will deliver three new software capabilities for the Toolkit over a two-year period ending in August...
- This $350,381 project grant from the National Science Foundation Directorate for Mathematical and Physical Sciences' Mathematical and Physical Sciences program (CFDA 47.049) supports collaborative research between the California Institute of Technology and other institutions to open the infrared sky to multi-messenger astrophysics. Key products and services include conducting time-domain surveys with the Wide-field Infrared Transient Explorer telescope at Palomar Observatory to search for...
- This three-year, $598,710 project grant from the National Science Foundation's Mathematical and Physical Sciences program will fund research and education activities at the California Institute of Technology (Caltech) and the University of Maryland, College Park focused on investigating electromagnetic precursor transients to gravitational wave events through computational simulations. Caltech will lead the research effort to perform the first numerical simulations of the crustal shattering...
- This $259,995 federal Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences program (CFDA 47.049) supports the development of an open-source, GPU-enabled computational code for modeling the physics of compact object mergers, such as binary neutron star and black hole-neutron star collisions. The code will leverage advanced neutrino transport models and high-performance GPU computing to enable more accurate and scalable simulations of these...
- This $1,075,500 Project Grant award from the National Science Foundation (NSF) Directorate for Mathematical and Physical Sciences (CFDA 47.049) supports theoretical research to improve the ability of the Laser Interferometer Gravitational-Wave Observatory (LIGO) to extract information from observed gravitational waves. The research aims to enhance the accuracy and parameter coverage of gravitational waveform predictions using the Spectral Einstein Code (SPEC) for binary black hole collisions,...
ELEMENTS: AN INITIAL VALUE SOLVER FOR THE ERA OF MULTI-MESSENGER ASTROPHYSICS -THE ADVENT OF MULTIMESSENGER? ASTRONOMY PROMISES TO RESOLVE A NUMBER OF LONG-STANDING ASTROPHYSICAL PUZZLES, SUCH AS THE ORIGIN OF SHORT GAMMA-RAY BURSTS AND R-PROCESS ELEMENTS, AS WELL AS THE NATURE OF MATTER AT SUPRANUCLEAR DENSITIES. AS ALREADY ESTABLISHED BY EVENT GW170817, THE SITES WHERE THESE PHENOMENA TAKE PLACE ARE MERGERS OF BINARY NEUTRON STARS, AND/OR BLACK HOLE--NEUTRON STARS. ESSENTIAL TO ANY GENERAL RELATIVISTIC SIMULATION IS THE CONSTRUCTION OF THE INITIAL VALUES THAT WILL BE EVOLVED AND WHICH DESCRIBE THE ASTROPHYSICAL SYSTEM UNDER CONSIDERATION AT AN INITIAL MOMENT. THIS AWARD SUPPORTS THE DEVELOPMENT OF A COMMUNITY OPEN SOURCE, GENERAL RELATIVISTIC INITIAL VALUE CODE USEFUL IN THE ERA OF MULTIMESSENGER ASTRONOMY. THE NEW CODE, WHICH WILL BE BASED ON THE PRIVATE COMPACT OBJECT CALCULATOR CODE WILL FOCUS ON PROVIDING TO THE ASTROPHYSICS COMMUNITY MODERN AND ACCURATE MODELING TOOLS THAT ARE CURRENTLY NOT AVAILABLE TO THEM. THIS SYSTEM OF MODULES WILL WORK TOGETHER AND GIVE USERS THE CAPABILITY TO SET UP NEW INITIAL DATA TYPES. SPECIAL ATTENTION WILL BE PAID TO LONG TERM SUSTAINABILITY AND INTERCONNECTIVITY WITH CURRENT NSF SUPPORTED CYBERINFRASTRUCTURE. THE RESEARCH AND OUTREACH ACTIVITIES SUPPORTED BY THIS GRANT HELP PROMOTE THE USE OF COMPUTERS AT ALL LEVELS OF EDUCATION, AS WELL AS THE PUBLIC AWARENESS OF SOME OF THE LATEST AND MOST EXCITING DEVELOPMENTS IN GRAVITATIONAL PHYSICS AND ASTROPHYSICS. MODELING OF STRONGLY GRAVITATING MAGNETIZED COMPACT OBJECTS EITHER IN ISOLATION OR IN A BINARY SYSTEM IS THE FOCUS OF THIS AWARD. IN ADDITION TO NUMERICAL MODELING, THIS PROGRAM INVOLVES ALSO ANALYTICAL TREATMENT OF SUCH ASTROPHYSICALLY RELEVANT SYSTEMS IN GENERAL RELATIVITY, RELATIVISTIC HYDRODYNAMICS AND MAGNETOHYDRODYNAMICS. AT THE SAME TIME THE NECESSARY INFRASTRUCTURE TO CONNECT THE NEW INITIAL DATA WITH A VARIETY OF EVOLUTION CODES THAT ARE CURRENTLY USED (AND IN SOME CASES FUNDED BY THE NSF), WILL BE DEVELOPED. EXTENSIVE DOCUMENTATION WILL BE PRODUCED THAT WILL LOWER THE ENTRANCE BARRIER OF NEW RESEARCHERS IN THIS FIELD. AS MORE SENSITIVE GRAVITATIONAL WAVE DETECTORS ---SUCH AS THE NSF-LED LIGO VOYAGER THAT WILL PROVIDE EXQUISITE OBSERVATIONS OF NEUTRON STARS AND STELLAR MASS BLACK HOLES, OR LISA THAT WILL TARGET SUPERMASSIVE BLACK HOLES--- COME INTO OPERATION, THE NECESSITY FOR MORE REALISTIC AND ACCURATE MODELING OF STRONGLY GRAVITATING MULTIMESSENGER SOURCES WILL BECOME IMPERATIVE. PROVIDING A TOOL FOR SUCH MODELING IS THE MOTIVATION FOR THIS AWARD. THIS PROJECT ADVANCES THE OBJECTIVES OF WINDOWS ON THE UNIVERSE: THE ERA OF MULTI-MESSENGER ASTROPHYSICS, ONE OF THE 10 BIG IDEAS FOR FUTURE NSF INVESTMENTS. THE AWARD BY THE OFFICE OF ADVANCED CYBERINFRASTRUCTURE IS JOINTLY SUPPORTED BY THE PHYSICS AT THE INFORMATION FRONTIER PROGRAM IN THE DIVISION OF PHYSICS WITHIN THE DIRECTORATE FOR MATHEMATICAL AND PHYSICAL SCIENCES. 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.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 9/16/25 | ||
| Not listed | $298.6k | 7/27/23 |