Ohara Supports NASA’s Nancy Grace Roman Space Telescope
Ohara optical glass selected for Coronagraph Instrument
and Wide Field Instrument of NASA’s Nancy Grace Roman Space Telescope.
Ohara Optical Glasses Featured in both the Coronagraph Instrument and Wide Field Instrument of NASA's Nancy Grace Roman Space Telescope
Branchburg, New Jersey, USA / Sagamihara, Japan – September 30, 2026 – Ohara Corporation is proud to announce that several Ohara optical glass types are incorporated into two key instruments aboard NASA’s Nancy Grace Roman Space Telescope, which successfully launched on August 30, 2026. The observatory carries two highly advanced optical systems: the Wide Field Instrument (WFI) and the Coronagraph Instrument (CGI), both designed to advance humanity’s understanding of exoplanets, dark energy, dark matter, and the evolution of the universe. Ohara optical glasses contributed to the development, testing, and flight hardware associated with these groundbreaking instruments. [1-4]
The Roman Coronagraph Instrument
The Roman Coronagraph Instrument (CGI) is designed to suppress the overwhelming light of distant stars, enabling astronomers to directly observe planets and dust disks orbiting those stars. By combining advanced masks, prisms, detectors, and deformable mirrors, the instrument is expected to achieve performance approximately 100 to 1,000 times greater than previous space-based coronagraph systems. The technologies demonstrated by the Coronagraph Instrument are expected to help pave the way for future space observatories capable of directly imaging Earth-like planets around nearby stars. [1,2]
The Roman Coronagraph Instrument incorporates Ohara radiation-resistant optical glass within its optical system. These specialized glass types were selected to withstand the radiation environment encountered during long-duration space missions while maintaining the exceptionally high optical performance required for direct imaging of exoplanets and circumstellar disks. These advanced materials help support the demanding optical requirements of the Coronagraph Instrument.
The Roman Wide Field Instrument
Integrated alongside the Coronagraph Instrument (CGI), the Wide Field Instrument (WFI) is a 300-megapixel near-infrared camera and spectroscopic system. The WFI provides a 0.281-square-degree field of view, with imaging and slitless spectroscopy modes supporting dark energy, exoplanet microlensing, and near-infrared surveys. [3,4]
The WFI incorporates a two-prism spectroscopic assembly utilizing Ohara optical glass in combination with calcium fluoride. This optical system will support broad astronomical surveys and the analysis of faint infrared signals from across the universe.
Ohara Optical Materials in the Roman Mission
A number of Ohara optical glass types were utilized during instrument development, optical testing, qualification, and mission-related activities associated with the Roman Space Telescope program. Radiation-resistant Ohara glass types were chosen to provide optical stability in the challenging radiation environment encountered during long-duration space missions. These specialized materials help enable the precision and reliability required for next-generation astronomical observations.
Supporting Future Scientific Discovery
The Nancy Grace Roman Space Telescope represents one of NASA’s most ambitious astrophysics missions. Through the supply of advanced optical glass materials used in both the Roman Coronagraph Instrument and the Wide Field Instrument, Ohara is honored to contribute to a mission that may transform our understanding of planetary systems, galaxy formation, dark energy, dark matter, and the origins of the universe. [1-4]
For more than 90 years, Ohara has developed specialty optical materials that enable scientific innovation, advanced imaging systems, semiconductor manufacturing, aerospace exploration, and life science technologies around the world. The Roman mission represents another example of how advanced optical materials help expand the boundaries of human knowledge.
About OHARA Corporation
Ohara Corporation is the U.S. subsidiary of Ohara Inc. and serves customers throughout North America, South America, and the Middle East. The company supplies advanced optical glass, glass ceramics, fused silica, polished substrates, and specialty optical materials for aerospace, semiconductor, life science, metrology, and industrial optics applications.
About Ohara Inc.
Ohara Inc., headquartered in Japan, is a global manufacturer of optical glass, specialty glass, fused silica, and glass ceramic materials. The company offers a broad portfolio of precision optical materials, including radiation-resistant optical glass products for demanding aerospace and scientific applications.
Editor's Notes
- References to NASA missions and instruments are provided for informational purposes only and do not imply NASA endorsement of Ohara Corporation or its products. [5,6]
- NASA images are reproduced for factual and informational purposes. NASA is acknowledged as the source. Users should confirm that each selected image is NASA-owned and does not contain third-party copyrighted material or an identifiable person requiring separate clearance. [5]
References
- Spectroscopy and Polarimetry Design and Flight Instrument Calibration for the Roman Coronagraph Instrument.
Tyler D. Groff, Neil T. Zimmerman, Evan Bray, et al. Journal of Astronomical Telescopes, Instruments, and Systems (JATIS), Vol. 11, No. 3, Article 031510. SPIE, 2025.
Available at: SPIE Digital Library – Roman Coronagraph Instrument - Compact Prism Assembly for Slit-Less Spectroscopy Capability in Roman Wide Field Instrument.
Bente H. Eegholm, Catherine T. Marx, Victor J. Chambers, et al. Journal of Astronomical Telescopes, Instruments, and Systems (JATIS), Vol. 11, No. 2, Article 025001. SPIE, 2025.
Available at: SPIE Digital Library – Roman Wide Field Instrument Prism Assembly - The Roman Coronagraph Instrument. NASA Jet Propulsion Laboratory.
Available at: NASA JPL Roman Coronagraph Instrument - Coronagraph. NASA Science, Nancy Grace Roman Space Telescope.
Available at: NASA Science Roman Coronagraph - Instruments and Capabilities. Roman Space Telescope / NASA Goddard Space Flight Center.
Available at: NASA Roman Instruments and Capabilities - Roman Technical Information. NASA Science, Nancy Grace Roman Space Telescope.
Available at: NASA Roman Technical Information - NASA Images and Media Usage Guidelines. NASA Brand Center.
Available at: NASA Images and Media Guidelines [nasa.gov] - NASA Brand Guidelines. NASA Brand Center.
Available at: NASA Brand Guidelines [nasa.gov]