NASA’s Hubble Seeks Lensed Supernova, Marks 200,000 Orbits

NASA ·

NASA’s Hubble Seeks Lensed Supernova, Marks 200,000 Orbits

NASA’s Hubble Space Telescope completed its 200,000th orbit around Earth on Sept. 19, marking another new milestone for an observatory that continues to transform our understanding of the universe. Hubble has traveled more than 5 billion miles around Earth over its 36-year lifetime, exceeding 1.7 million total observations. An observation completed on the day of […]

About Hubble The History of Hubble Hubble Timeline Why Have a Telescope in Space? Hubble by the Numbers At the Museum FAQs Impact & Benefits Hubble’s Impact & Benefits Science Impacts Cultural Impact Technology Benefits Impact on Human Spaceflight Astro Community Impacts Science Hubble Science Science Themes Science Highlights Science Behind Discoveries Universe Uncovered Hubble’s Partners in Science Hubble & Citizen Science AI & Hubble Science Explore the Night Sky Observatory Hubble Observatory Hubble Design Mission Operations Science Operations Astronaut Missions to Hubble Hubble vs. Webb Hubble vs. Roman Team Hubble Team Career Aspirations Hubble Astronauts Multimedia Images Videos Online Activities e-Books Sonifications Podcasts 3D Hubble Models Lithographs Fact Sheets Posters Hubble on the NASA App Glossary News Hubble News Social Media Media Resources 35th Anniversary More Online Activities 2 min read

NASA’s Hubble Space Telescope completed its 200,000th orbit around Earth on Sept. 19, marking another new milestone for an observatory that continues to transform our understanding of the universe.

Hubble has traveled more than 5 billion miles around Earth over its 36-year lifetime, exceeding 1.7 million total observations. An observation completed on the day of the 200,000th orbit pertains to one of Hubble’s defining scientific legacies: measuring the expansion rate of the universe, or the Hubble Constant. The image takes advantage of the telescope’s ability to return to the same regions of the sky over time to monitor for the reappearance of a supernova, or explosion of a star, called Athena.

Massive galaxy cluster MACS J0417, located at the left center of the image, acts as a gravitational lens , bending and magnifying light from objects far behind it. Light from a supernova can reach Earth along multiple paths, causing the same stellar explosion to appear more than once at times separated by months or even years depending on the path it took. Supernova Athena, discovered by NASA’s James Webb Space Telescope in 2025, is predicted to reappear between now and early March 2027. Measuring the timing of Athena’s reappearances can help researchers map the mass of MACS J0417, which acts as a magnifying, foreground lens for distant objects, and refine our understanding of the expansion rate of the universe.

After more than 36 years in space, Hubble still is reaching new heights of scientific productivity and impact. Hubble’s unique ability to observe and analyze light in ultraviolet and visible wavelengths complements NASA’s James Webb and Roman Space Telescopes’ capabilities. As a result, demand for Hubble observing time remains high as astronomers request about seven times as much observing time as is available each year.

Hubble continues to observe targets across every area of astronomy around the clock, with real-time tracking of those observations available on NASA’s website .

@NASAHubble

@NASAHubble

@NASAHubble

Media Contact :

Claire Andreoli NASA’s  Goddard Space Flight Center ,  Greenbelt, MD claire.andreoli@nasa.gov

Since its 1990 launch, the Hubble Space Telescope has changed our fundamental understanding of the universe.

Explore an assortment of galaxies with Hubble.

Hubble’s most notable scientific discoveries reflect the broad range of research and the breakthroughs it has achieved.

Explore Hubble’s iconic images of the universe, and view photos of mission operations and astronauts servicing Hubble in space.

Источник: NASA