Project Grant 2513492
- The National Science Foundation Directorate for Mathematical and Physical Sciences awarded the University of California, Berkeley $293,451 on August 15, 2026, to develop advanced mirror coatings for third-generation gravitational-wave detectors, specifically the 40-kilometer Cosmic Explorer (CE) planned for the United States. The Center for Coatings Research (CCR), a collaborative effort spanning materials science and gravitational-wave communities, focuses on producing mirror coatings that meet...
- The National Science Foundation Directorate for Mathematical and Physical Sciences awarded Northeastern University $223,099 on August 15, 2026, to develop advanced mirror coatings for third-generation gravitational-wave detectors, specifically the Cosmic Explorer (CE), a proposed 40-kilometer detector that will extend gravitational-wave observations to high redshifts and enable detection of stellar-size events at cosmological distances. The Center for Coatings Research (CCR) project addresses...
- The National Science Foundation Directorate for Mathematical and Physical Sciences awarded Colorado State University $151,284 on August 15, 2026, to develop advanced mirror coatings for third-generation gravitational-wave detectors, specifically the Cosmic Explorer (CE) instrument planned for the United States. The Center for Coatings Research (CCR), a collaborative effort between materials science and gravitational-wave physics communities, will engineer mirror coatings capable of meeting the...
- The National Science Foundation Directorate for Mathematical and Physical Sciences awarded The Leland Stanford Junior University $373,307 on August 15, 2026, for development of advanced mirror coatings for third-generation gravitational-wave detectors, specifically the Cosmic Explorer. The Center for Coatings Research (CCR) develops mirror coatings that meet optical and mechanical requirements for the Cosmic Explorer's 40-kilometer detector arms. The Cosmic Explorer will operate at 1.5 megawatts...
- This National Science Foundation (NSF) Project Grant, awarded under the Mathematical and Physical Sciences Program (CFDA 47.049), is providing $100,000 to support the development and characterization of AlGaAs coatings for LIGO gravitational-wave detectors. The goal is to improve the mirrors in the laser-based LIGO system, enabling more frequent and higher quality observations of gravitational wave events. This research will help advance the understanding of the universe, including mysteries...
- The National Science Foundation Directorate for Mathematical and Physical Sciences awarded Kennesaw State University Research And Service Foundation $179,846 on August 15, 2026, to develop advanced mirror coatings for third-generation gravitational-wave detectors, specifically the Cosmic Explorer. The award is made under the Mathematical and Physical Sciences program (CFDA 47.049). The Center for Coatings Research combines materials science and gravitational-wave physics communities to design...
- The National Science Foundation (NSF) Directorate for Mathematical and Physical Sciences awarded a $538,727 Project Grant to Hobart and William Smith Colleges to develop a Large Optic Crystalline Coating Characterization Instrument (LOCCCI) for gravitational wave detectors. This instrument will enable the development of low-noise, large-diameter, crystalline mirror coatings that can reduce coating thermal noise by a factor of 10 compared to current coatings. This advancement in sensitivity...
- The National Science Foundation Directorate for Mathematical and Physical Sciences awarded Syracuse University $245,956 on August 15, 2026, under the Mathematical and Physical Sciences program (CFDA 47.049) to develop advanced mirror coatings for third-generation gravitational-wave detectors, specifically the Cosmic Explorer. The project addresses a critical technical barrier for the Cosmic Explorer's 40-kilometer arms, which will require 1.5 megawatts of optical power. The mirror coatings...
- This federal Project Grant award from the National Science Foundation's Mathematical and Physical Sciences (CFDA 47.049) program provides $247,157 to Northeastern University to conduct research on developing improved mirror coatings for gravitational wave detectors. The key objectives are to understand and reduce mechanical loss in amorphous metal-oxide coatings, and to develop and test crystalline coatings with lower thermal noise. This research aims to reduce a major barrier limiting the...
- This Project Grant award from the National Science Foundation (NSF) Mathematical and Physical Sciences (CFDA 47.049) program provides $139,844 to American University to develop and characterize AlGaAs coatings for gravitational-wave detectors. The goal is to improve the mirrors used in the Laser Interferometer Gravitational-Wave Observatory (LIGO) to enable more frequent and sensitive detection of gravitational waves, which can help advance our understanding of the universe and test theories...
COLLABORATIVE RESEARCH: CENTER FOR COATINGS RESEARCH -A DECADE AFTER THE FIRST DETECTION OF GRAVITATIONAL WAVES, THIS NEW FORM OF OBSERVATIONAL ASTROPHYSICS IS BOOMING. NEW OBSERVATIONS OF MERGERS OF NEUTRON STARS AND BLACK HOLES WERE PUBLICLY ANNOUNCED WEEKLY DURING THE FOURTH OBSERVING RUN (O4) OF NSF?S ADVANCED LIGO DETECTORS. THE NEXT REVOLUTION IN GRAVITATIONAL-WAVE OBSERVATION, THE PROPOSED THIRD GENERATION (3G) DETECTORS, NOTABLY THE 40-KM COSMIC EXPLORER (CE) IN THE U.S., WILL EXTEND THE OBSERVATIONAL REACH ACROSS COSMIC TIME TO HIGH REDSHIFTS, ENABLING OBSERVATIONS OF THE COALESCENCE OF REMNANTS OF THE FIRST STARS. THESE WILL BE THE ONLY INSTRUMENTS ABLE TO OBSERVE STELLAR-SIZE EVENTS AT DISTANCES WHERE EVEN THE JAMES WEBB SPACE TELESCOPE CAN ONLY RESOLVE ENTIRE GALAXIES. THE CENTER FOR COATINGS RESEARCH (CCR) FOCUSES ON THE DEVELOPMENT OF ADVANCED MIRROR COATINGS FOR THESE 3G DETECTORS. CE?S AMBITIOUS GOALS REQUIRE 1.5 MW OF OPTICAL POWER IN THE DETECTOR?S ARMS. SUPPORTING THESE ENORMOUS OPTICAL POWERS REQUIRES MIRROR COATINGS WITH UNPRECEDENTEDLY LOW OPTICAL ABSORPTION WHILE MEETING MYRIAD OTHER STRICT REQUIREMENTS, NOTABLY THERMAL NOISE FROM INTERNAL FRICTION IN THE COATINGS. THE PROJECT HAS BROADER SCIENTIFIC IMPACTS ON PRECISION MEASUREMENT TECHNOLOGY, BENEFITING AREAS LIKE PRECISION TIMING, QUANTUM INFORMATION, LOW NOISE INTERFEROMETRY, AND THE SEARCH FOR DEVIATIONS IN THE GRAVITATIONAL INVERSE-SQUARE LAW. THE OUTCOMES OF THIS RESEARCH CAN ALSO HAVE TECHNOLOGICAL IMPLICATIONS FOR THE SEMICONDUCTOR, LASER, AND QUANTUM COMPUTING COMMUNITIES, AS CORRELATIONS BETWEEN OPTICAL AND MECHANICAL LOSS AND OTHER LOSS MECHANISMS ARE EXPLORED. ADDITIONALLY, THIS COLLABORATION BETWEEN MATERIALS SCIENCE AND GRAVITATIONAL WAVE COMMUNITIES PROVIDES RESEARCH OPPORTUNITIES FOR STUDENTS AT DIFFERENT EDUCATION LEVELS. THIS PROJECT AIMS TO DEVELOP MIRROR COATINGS THAT MEET THE OPTICAL AND MECHANICAL REQUIREMENTS FOR IMPLEMENTATION IN CE. THE CCR COMBINES GROUPS WORKING ON COATING DEPOSITION, CHARACTERIZATION OF ATOMIC STRUCTURE AND MACROSCOPIC MATERIAL PROPERTIES, AND COMPUTATIONAL MODELING. THESE COMPONENTS ARE OFTEN PERFORMED BY THREE DIVERSE COMMUNITIES THAT WORK IN RELATIVE ISOLATION FROM EACH OTHER. THE STRENGTH OF THE CCR AND ITS SUCCESS IN ACCELERATING DISCOVERIES ARISES FROM THE CLOSE INTEGRATION OF THESE COMMUNITIES, FOCUSING ON A UNIFIED RESEARCH GOAL. SINCE THE FORMATION OF THE CCR IN 2017, THE COLLABORATION HAS BECOME A KNOWLEDGE REPOSITORY FOR GRAVITATIONAL WAVE DETECTOR COATINGS RESEARCH, MAKING SIGNIFICANT PROGRESS ON ALL THE PROPOSED RESEARCH DIRECTIONS, INCLUDING UNCOVERING ATOMIC STRUCTURAL MOTIFS ASSOCIATED WITH ROOM TEMPERATURE VS CRYOGENIC MECHANICAL LOSSES, USING THAT UNDERSTANDING TO DEVELOP TI:GEO2 COATINGS THAT CAN MEET THE REQUIREMENTS FOR ADVANCED LIGO + (A+), AND IDENTIFYING MECHANISMS RESPONSIBLE FOR A MAJOR PART OF THE OPTICAL ABSORPTION IN THESE NEW MATERIALS. THE OUTCOMES OF THIS RESEARCH CAN ALSO HAVE IMPLICATIONS FOR THE SEMICONDUCTOR, LASER, AND QUANTUM COMPUTING COMMUNITIES, ESSENTIALLY ANY FIELD SENSITIVE TO EXTREMELY LOW LEVELS OF DISSIPATION. ADDITIONALLY, THIS COLLABORATION BETWEEN MATERIALS SYNTHESIS, MODELING, AND CHARACTERIZATION GROUPS WITH THE BROADER GRAVITATIONAL WAVE COMMUNITY PROVIDES A RICH MULTI-DISCIPLINARY ENVIRONMENT FOR THE PREPARATION OF STUDENTS AND POST-DOCS TO WORK IN THE INCREASINGLY COMPLEX ENVIRONMENTS CHARACTERISTIC OF CONTEMPORARY STEM FIELDS. 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 | $27.8k | 8/10/26 |