Project Grant 2307599
- This $271,496 National Science Foundation project grant supports collaborative research on dwarf galaxies over cosmic time. The University of Arizona will investigate dwarf galaxy populations within five million parsecs and halfway across the observable universe using wide-field, high-resolution multi-object spectrometers in both hemispheres. An integral field unit spectrograph constructed with prior NSF funding, IFUM, will obtain the first measurements of star formation rates, metallicity,...
- This Project Grant from the National Science Foundation Division of Astronomical Sciences provides $304,225 to the University of Florida and the University of Chicago from September 1, 2022 through August 31, 2025. The funding supports research under the Mathematical and Physical Sciences program to advance understanding of stellar formation history through non-local thermodynamic equilibrium modeling of elemental abundances in metal-poor red giant stars. Specifically, the universities will...
- The National Science Foundation Division of Astronomical Sciences awarded San Jose State University Research Foundation a $378,953 Project Grant to conduct research on the origins and properties of ultra-diffuse galaxies (UDGs). Through this 3-year grant, the researchers will integrate photometric, spectroscopic, and cosmological simulation data to investigate UDG star formation histories, chemical abundances, dark matter content, and globular cluster populations. Key goals include determining...
- This Project Grant from the National Science Foundation Division of Astronomical Sciences provides $218,572 to San Francisco State University under the Mathematical and Physical Sciences federal grant program (CFDA 47.049) to characterize over 300 metal-poor star candidates observed in the Apache Point Observatory Galactic Evolution Experiment survey. The University will analyze and conduct follow-up observations of the metal-poor star candidates using the Lick and Keck telescopes to determine...
- This Project Grant from the National Science Foundation Division of Astronomical Sciences will support research to develop more accurate non-local thermodynamic equilibrium (non-LTE) models for analyzing spectra of metal-poor red giant stars. The University of Chicago will receive $424,475 under the award, covering the period from September 1, 2022 to August 31, 2025. The investigators will enhance existing stellar spectral analysis tools by implementing non-LTE physics and machine learning...
- This $153,169 Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences program (CFDA 47.049) supports a collaborative research project at Saint Martins University that aims to study the disintegration of globular clusters and their contribution to the metal-poor bulge of the Milky Way galaxy. The research team, comprising investigators from four primarily undergraduate institutions, will obtain detailed observations of 3,000 stars to measure their...
- This Project Grant from the National Science Foundation Division of Astronomical Sciences provides $243,204 to the University of California Santa Cruz to characterize metal-poor stars in the Apache Point Observatory Galactic Evolution Experiment survey. Under the Mathematical and Physical Sciences program (CFDA 47.049), the award will fund analysis of over 300 metal-poor star candidates identified in the APOGEE survey data. Follow-up observations will be conducted at Lick and Keck...
- The National Science Foundation Division of Astronomical Sciences has awarded a $644,032 Project Grant to the Massachusetts Institute of Technology (MIT) to conduct research on reconstructing the early formation history of the Milky Way galaxy. The research, funded through the NSF's Mathematical and Physical Sciences program (CFDA 47.049), will observe the oldest known metal-poor stars in the galaxy using high-resolution spectroscopy. This will allow the investigator to characterize the sites...
- This Project Grant from the National Science Foundation Division of Astronomical Sciences totaling $476,066 will support research characterizing low-mass galaxies through spectroscopy from ground-based telescopes and the James Webb Space Telescope. Funded under the Mathematical and Physical Sciences program (CFDA 47.049), the award will allow detection and spectroscopic characterization of the faintest and youngest galaxies ever discovered between redshifts of 4-7. Specifically, the University...
- This federal Project Grant award, totaling $105,646, was provided by the National Science Foundation (NSF) under the Mathematical and Physical Sciences program (CFDA 47.049) to support a collaborative research project led by Seattle University. The research aims to confirm the origins of stars in the Milky Way's metal-poor bulge by spectroscopically measuring the elemental abundances of candidate globular cluster tidal debris stars. The project will involve obtaining detailed observations of...
METALLICITY DISTRIBUTIONS OF THE FAINTEST DWARF GALAXIES -ULTRA-FAINT DWARF GALAXIES (UFDS) APPEAR TO BE THE OLDEST, THE MOST DARK MATTER DOMINATED, AND THE MOST METAL-POOR GALAXIES KNOWN. THEY APPEAR TO HAVE FORMED ALL OF THEIR STARS DURING THE UNIVERSE?S FIRST 1-2 BILLION YEARS OF EXISTENCE. AS SUCH, THEIR STELLAR POPULATIONS RETAIN IMPORTANT INFORMATION CONCERNING PROCESSES AT WORK DURING THIS EARLY EPOCH, INCLUDING THE FORMATION OF THE FIRST GENERATION OF STARS (POPULATION III) AND REIONIZATION. WHILE HIGH REDSHIFT UFDS ARE TOO FAINT TO BE STUDIED BY EVEN THE JWST, NEARBY EXAMPLES SHOULD IN PRINCIPLE BE CAPABLE OF YIELDING ENOUGH INFORMATION TO RECONSTRUCT THEIR FORMATION HISTORY AND CONSTRAIN GALAXY FORMATION. THE PRINCIPAL INVESTIGATOR (PI) AND HIS TEAM WILL USE DEEP SPECTROSCOPY AND PHOTOMETRY OBTAINED WITH THE MAGELLAN TELESCOPE TO DERIVE METALLICITIES OF 50-200 MAIN-SEQUENCE TURN-OFF (MSTO) STARS FOR EACH OF FOUR NEARBY UFDS, MORE THAN DOUBLING THE NUMBER WITH MEASURED CHEMICAL ABUNDANCES. ANALYSIS OF THE RESULTING METALLICITY DISTRIBUTION FUNCTIONS (MDFS) PROMISES TO YIELD PRECISE STAR FORMATION HISTORIES FOR THESE OBJECTS AND THUS PROVIDE IMPORTANT CONSTRAINTS ON THE FORMATION OF THE FIRST GALAXIES. AN EXCITING SECONDARY GOAL OF THIS WORK IS THE POSSIBILITY OF DETECTING INDIVIDUAL POPULATION III STARS AMONG THE OBSERVED MSTO STARS AND CONSTRAINING THEIR MASS FUNCTION. THIS AWARD WILL SUPPORT THE TRAINING OF A GRADUATE STUDENT AS WELL AS RESEARCH EXPERIENCES FOR UNDERREPRESENTED UNDERGRADUATE STUDENTS. THE PI WILL ALSO IMPLEMENT A SERIES OF TALKS DURING THE SUMMER FOR UNDERGRADUATE RESEARCHERS. THE RESEARCHERS WILL OBTAIN DEEP SPECTROSCOPY CAPABLE OF ENABLING METALLICITY MEASUREMENTS FOR 50- 200 MSTO STARS IN EACH OF THE TARGETED UFD GALAXIES. THIS WILL RESULT IN THE LARGEST METALLICITY SAMPLE TO DATE FOR CHEMICAL EVOLUTION MODELING OF THESE SYSTEMS. THE TEAM WILL BREAK AGE-METALLICITY DEGENERACIES IN ISOCHRONE-BASED STAR FORMATION HISTORIES, WHICH WILL ENABLE SUB-GIGAYEAR AGE PRECISION FOR INDIVIDUAL MSTOS. AGES AND METALLICITIES WILL BE DETERMINED BY SIMULTANEOUSLY FITTING STELLAR PHOTOMETRY AND LINE EQUIVALENT WIDTHS. THESE WILL LEAD TO THE BEST-MEASURED FORMATION HISTORIES OF UFDS, WHICH WILL MAKE THE DATA INVALUABLE AS TESTS OF CHEMICAL EVOLUTION OR HYDRODYNAMIC GALAXY FORMATION SIMULATIONS. THESE FORMATION HISTORIES WILL ADVANCE UNDERSTANDING OF THE EDGE OF GALAXY FORMATION BY SHOWING HOW QUICKLY STAR FORMATION IS HALTED IN THE FAINTEST DWARF GALAXIES. GIVEN THE VERY LOW UFD STELLAR MASSES AND LARGE NUMBER OF METALLICITY MEASUREMENTS, THERE IS ALSO A SUBSTANTIAL CHANCE TO DISCOVER A SURVIVING POPULATION III STAR, WHICH WOULD BE THE FIRST OF ITS KIND. 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 | $0 | 3/16/26 | ||
| Not listed | $459.2k | 8/25/23 |