The field of view of the Nancy Grace Roman Space Telescope (artist’s illustration) will be roughly 100 times bigger than that of the Hubble Space Telescope. Credit: NASA/Handout via Reuters The largest infrared digital camera ever built and its scientific companion, a massive mirror originally designed for a spy satellite, are now safely in orbit,
Sign Up For Goods 🛍️ Product news, reviews, and must-have deals. By signing up, you confirm you are 16+, will receive newsletters and promotional content and agree to our Terms of Use and acknowledge the data practices in our Privacy Policy. You may unsubscribe at any time. Our phones get better camera hardware and image-processing
Five antennas soak in the summer sun at the Deep Space Network’s Goldstone complex near Barstow, California, in August 2026. The recently completed Deep Space Station 23, a 34-meter (114-foot) beam-waveguide antenna, can be seen to the right of the frame in the foreground. The other three 34-meter antennas are, from left, DSS-26, DSS-25, and DSS-24.
From this vantage point, Roman will conduct an unprecedented survey of the universe. Its field of view is 100 times larger than Hubble’s and, according to NASA, it can survey the sky 1,000 times faster using its 300-megapixel infrared camera. Roman also has a Coronagraph system that can block and mask glare from stars, allowing
Long shadows are cast by the recently completed Deep Space Station 23 at the Deep Space Network’s Goldstone complex near Barstow, California, in August 2026. A 34-meter (114-foot) multifrequency beam-waveguide antenna, DSS-23 will boost the DSN’s capacity and enhance NASA’s deep space communications capabilities for decades to come. NASA leadership and personnel as well as
Leadership from NASA Headquarters, the Jet Propulsion Laboratory, and the Deep Space Network (DSN) stand in front of the recently completed Deep Space Station 23 antenna at the Deep Space Network’s Goldstone complex near Barstow, California, on Aug. 25, 2026. From left: Germaine Aziz (project manager, DSN Aperture Enhancement Project, JPL); Bradford Arnold (manager, Telecom