This $240,383 Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences (CFDA 47.049) program will support collaborative research focused on assessing and mitigating local gravity disturbances to improve the low-frequency sensitivity of the next-generation Cosmic Explorer gravitational wave observatory. The research team will develop techniques for measuring and modeling Newtonian noise caused by seismic and other vibrational effects around the planned...
This Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences (CFDA 47.049) program provides USD 140,934 to support research at the University of Minnesota aimed at improving the sensitivity of the next-generation Cosmic Explorer gravitational wave observatory. The award will develop techniques to measure and mitigate the impact of local gravitational disturbances, which can limit the low-frequency performance of gravitational wave detectors. This...
The National Science Foundation (NSF) Division of Physics awarded a $172,314 Project Grant to the Massachusetts Institute of Technology (MIT) under the Mathematical and Physical Sciences (CFDA 47.049) program. This grant supports the conceptual design of the laser interferometer for the Cosmic Explorer gravitational wave observatory, a next-generation detector system that aims to advance gravitational wave science and inspire future researchers. The key products to be delivered under this 3-year...
This $467,073 federal Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences program (CFDA 47.049) supports a collaborative research effort between Carnegie Mellon University (CMU) and the Massachusetts Institute of Technology (MIT). The research aims to utilize gravitational waves as a tool to further understand high-energy physics and cosmology, including the potential detection of stochastic gravitational wave backgrounds from early universe...
This $346,639 federal Project Grant award was provided by the National Science Foundation (NSF) under the Mathematical and Physical Sciences (CFDA 47.049) program. The funding supports a collaborative research project between Carnegie-Mellon University and the Massachusetts Institute of Technology (MIT) to study gravitational waves as messengers from the early universe. The key products and services to be delivered include: Using gravitational waves as a tool to gain insights into high energy...
This $419,999 National Science Foundation project grant supports research to improve the sensitivity of current and future gravitational-wave detectors at low frequencies through 2025. Funded under the Mathematical and Physical Sciences program (CFDA 47.049), the award to the Massachusetts Institute of Technology will involve mechanical engineers and physicists developing an improved suspension system for the Laser Interferometer Gravitational-Wave Observatory (LIGO) and an early design...
The Massachusetts Institute of Technology (MIT) received a $500,000 Project Grant award from the National Science Foundation (NSF) to support the CAREER: POPULATIONS AND SYSTEMATIC UNCERTAINTIES IN THE ERA OF THE ADVANCED GRAVITATIONAL-WAVE DETECTORS project. The award was made under the NSF's Mathematical and Physical Sciences program (CFDA 47.049), which aims to promote progress in these scientific fields and strengthen the nation's scientific enterprise through increased knowledge and...
This Project Grant award, provided by the National Science Foundation (NSF) under the Mathematical and Physical Sciences (MPS) program (CFDA 47.049), aims to advance the field of interferometric gravitational wave astronomy. The $150,000 award, with a performance period of August 1, 2024 to July 31, 2027, will support research focused on three key areas: 1) Simulations to support commissioning of the Laser Interferometer Gravitational-Wave Observatory (LIGO) and design of future detectors like...
This National Science Foundation Project Grant award provides $180,000.00 to the University of Massachusetts Dartmouth from July 1, 2023 to June 30, 2026 under the Mathematical and Physical Sciences program (CFDA 47.049). The primary goal of the project is to develop novel numerical simulations and data-driven models to predict gravitational wave signals from mergers of black holes and neutron stars. This research will test Einstein's general relativity under extreme conditions and help maximize...
This Project Grant award, totaling $189,022, was provided by the National Science Foundation (NSF) under the Mathematical and Physical Sciences (CFDA 47.049) Federal Grant Program. The funding supports an interdisciplinary research team to use advanced machine learning techniques to develop new models for studying the complex gravitational wave signals from binary black hole systems in extreme astrophysical environments. The team plans to build on their previous work on gravitational waveform...