Cooperative Agreement 2331108

Award Date 10/1/23
Completion Date 5/31/25
Dollars Obligated $6.5M
Funding Federal Agency
National Science Foundation
Awarding Federal Agency
Division of Astronomical Sciences
Federal Grant Program
47.049
Assistance Type
Cooperative Agreement
Place of Performance
Pasadena, CA 91124, USA
Similar Awards
This $6,500,000 Cooperative Agreement award from the National Science Foundation's (NSF) Mathematical and Physical Sciences Federal Grant Program (CFDA 47.049) supports design and development work for critical components of the Thirty Meter Telescope (TMT), a planned extremely large ground-based astronomical telescope. The award will fund activities in four key areas: 1) completing the design of the secondary mirror polishing and metrology equipment, 2) advancing the design of the alignment...
This Cooperative Agreement award from the National Science Foundation (NSF) under the Mathematical and Physical Sciences program (CFDA 47.049) will support the development of key technologies needed for the Giant Magellan Telescope (GMT) project in Chile. The $6,500,000 award, effective October 1, 2024 through September 30, 2026, will fund three main technical tasks: (1) the design and build of an adaptive optics and mirror phasing testbed to improve the telescope's wavefront control...
The National Science Foundation (NSF) awarded a $3,904,416 project grant under the Mathematical and Physical Sciences program (CFDA 47.049) to the University of California, Santa Cruz (UCSC) to develop, fabricate, and install the optical alignment systems for the initial seven medium-sized telescopes for the Cherenkov Telescope Array (CTA) observatory. This project supports U.S. CTA scientists in this work, which will be conducted at the telescope sites in La Palma, Spain, Paranal, Chile, and...
This Cooperative Agreement award from the National Science Foundation's Mathematical and Physical Sciences program (CFDA 47.049) provides $6,500,000 to support the development of key technologies needed for the Giant Magellan Telescope (GMT) project. The award will fund three specific risk-reduction activities: 1) testing the active optics system for the primary mirror, 2) building an adaptive secondary mirror phasing testbed, and 3) developing a prototype laser tomography adaptive optics...
This Project Grant award of $561,949.00 from the National Science Foundation (NSF) Mathematical and Physical Sciences Program (CFDA 47.049) supports research and development by Arizona State University (ASU) to advance the field of optical intensity interferometry. The key objectives are: (i) Developing a time calibration system to enable automated photon correlation measurements on small telescopes using commercial single photon detectors and time-to-digital converters. (ii) Implementing...
This $234,639 two-year Project Grant from the National Science Foundation's Mathematical and Physical Sciences Directorate (NSF MPS) will support the Las Cumbres Observatory Global Telescope Network, Inc. (LCO) to develop the USA Sky Partners program. The program aims to expand access to authentic astronomy research experiences for undergraduates at Hispanic-serving and minority-serving institutions. Specifically, LCO will partner with Occidental College and the University of Puerto Rico-Rio...
This $754,682 three-year Project Grant from the National Science Foundation's Office of Advanced Cyberinfrastructure, under the Computer and Information Science and Engineering program (CFDA 47.070), will support the development of the Target and Observation Manager (TOM) Toolkit by Las Cumbres Observatory Global Telescope Network, Inc. The TOM Toolkit is open source scientific project management software that will interface with discovery alert brokers and telescopes to enable researchers to...
This Project Grant award of $678,244 from the National Science Foundation's (NSF) Mathematical and Physical Sciences program (CFDA 47.049) supports research by the University of California, Berkeley to advance the use of adaptive optics (AO) systems for visible-light astronomy. The key products and services to be delivered include: Developing a high-fidelity numerical simulation, or "digital twin", of the AO system at the W.M. Keck Observatory to identify sources of wavefront error and...
This Project Grant award from the National Science Foundation (NSF) under the Technology, Innovation, and Partnerships (TIP) program provides $1,256,673.00 to the University of California Santa Cruz to establish an Observatory-Driven Sustainability Path for PYPEIT, an Open-Source Ecosystem (OSE) for Astronomical Spectroscopy. The key objectives are to: Strategically expand the PYPEIT developer base to include staff at seven U.S. observatories, enabling the software to support processing data...
The National Science Foundation (NSF) awarded a $449,190 Project Grant under the Mathematical and Physical Sciences (CFDA 47.049) program to the Las Cumbres Observatory Global Telescope Network, Inc. (LCO) to expand access to authentic astronomy research experiences for underrepresented undergraduate students. The "USA SKY Partners" program, managed by LCO, will provide a curriculum, training, and mentoring for faculty as well as access to LCO's global network of 0.4m robotic...

US ELT PROGRAM: TMT DESIGN AND DEVELOPMENT -IN THE 2030S A NEW ERA IN ASTRONOMY WILL BEGIN WITH THE COMMISSIONING OF EXTREMELY LARGE TELESCOPES (ELTS) WITH APERTURES IN THE 25 TO 40-METER RANGE. THESE FACILITIES WILL BE KEY TO ANSWERING MANY OF THE FUNDAMENTAL QUESTIONS RAISED IN THE RECENT NATIONAL ACADEMIES DECADAL SURVEY IN ASTRONOMY AND ASTROPHYSICS, ?ASTRO2020?, WHICH IDENTIFIED U.S. INVOLVEMENT IN FUTURE ELTS AS ITS TOP PRIORITY FOR GROUND-BASED ASTRONOMY. ONE OF THESE FACILITIES WILL BE THE THIRTY METER TELESCOPE, TO BE BUILT BY TMT INTERNATIONAL OBSERVATORY (TIO) AND WITH A PREFERRED SITE IN HAWAI?I. TMT WILL HAVE THE SPATIAL RESOLUTION (12 TIMES SHARPER THAN THE HUBBLE SPACE TELESCOPE AND 4.6 TIMES THE JWST) AND SENSITIVITY (WITH ADAPTIVE OPTICS, ~200 TIMES MORE SENSITIVE THAN 8-M TELESCOPES) TO PROBE AND CHARACTERIZE THE MOST DISTANT AND EARLIEST GALAXIES, TO STUDY THE FORMATION OF STELLAR SYSTEMS ACROSS COSMIC TIME, AND TO CHARACTERIZE EXOPLANETS ? MOST NOTABLY THEIR ATMOSPHERES THAT MAY REVEAL POSSIBLE SIGNATURES OF LIFE. TMT WILL ADDRESS SOME OF HUMANITY?S BIGGEST QUESTIONS ABOUT THE UNIVERSE ITSELF AND OUR PLACE WITHIN IT. DEVELOPMENT AND RISK REDUCTION ACTIVITIES WILL BE CONCENTRATED IN FOUR KEY AREAS: 1) TIO WILL COMPLETE M2 PRELIMINARY DESIGN, INCLUDING OPTIMIZED PASSIVE MECHANICAL SUPPORT, M2 POSITIONER STAGE DESIGN WITH ELECTRONICS AND CONTROL SYSTEM, FINITE-ELEMENT ANALYSIS PERFORMANCE MODELS AND PRELIMINARY DESIGN REVIEW DOCUMENTATION; 2) TIO WILL COMPLETE PRELIMINARY DESIGN FOR THE ALIGNMENT AND PHASING SYSTEM, INCLUDING PERFORMANCE ANALYSIS, PROTOTYPING, SYSTEMS ENGINEERING, AND SOFTWARE DEVELOPMENT; 3) TIO WILL COMPLETE PRELIMINARY DESIGN AND PROTOTYPING OF COMPONENTS FOR THE PRIMARY MIRROR CONTROL SYSTEM, NAMELY THE SEGMENT CONTROLLER AND CABLING ELECTRONICS, SOFTWARE, AND ACTUATORS; AND 4) TIO WILL COMPLETE THE PRELIMINARY DESIGN OF THE TERTIARY MIRROR SYSTEM, ONE OF THE KEY OPTICAL ELEMENTS THAT DEFINES THE QUALITY OF THE DELIVERED IMAGES. SOME OF THE KEY TECHNOLOGIES DEVELOPED AS PART OF THIS PROPOSAL WILL DIRECTLY BENEFIT THE U.S. ASTRONOMICAL COMMUNITY BY ADVANCING THE STATE OF THE ART OF CRITICAL COMPONENTS THAT WILL BE REQUIRED BY THE CURRENT AND FUTURE GENERATIONS OF ASTRONOMICAL FACILITIES. SPECIFICALLY, ADVANCES IN THE PRIMARY MIRROR CONTROL SYSTEM TECHNOLOGY WILL DIRECTLY BENEFIT ANY FUTURE EFFORT TO USE SEGMENTED MIRRORS, WHILE THE WORK RELATED TO THE SECONDARY MIRROR SYSTEM WILL FURTHER THE DEVELOPMENT OF CONTROL SYSTEMS FOR LARGE CONVEX SECONDARY MIRRORS. SIMILARLY, THE TERTIARY MIRROR SYSTEM WORK WILL DEVELOP TECHNOLOGIES THAT WILL BENEFIT ANY FUTURE LARGE TELESCOPE PROJECT AND ENSURE U.S. LEADERSHIP IN THE FIELD. THE PROJECT WILL DOCUMENT AND PUBLISH THE RESULTS OF THEIR WORK, PROMOTE DIVERSITY IN THEIR WORKFORCE AND PARTNERS, AND EXPOSE EARLY CAREER COLLEAGUES TO NEW TECHNOLOGY, A KEY EFFORT IN DEVELOPING THE NEXT GENERATION OF TELESCOPE AND INSTRUMENT BUILDERS. 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.

Posted 9/25/23