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Showing posts with label JAXA. Show all posts
Showing posts with label JAXA. Show all posts

Friday, February 7, 2014

Structural Composition of Asteroid 25143 Itokawa


A schematic view of the strange peanut-shaped asteroid Itokawa.

By making exquisitely precise timing measurements using ESO’s New Technology Telescope, and combining them with a model of the asteroid's surface topography, a team of astronomers has found that different parts of this asteroid have different densities. As well as revealing secrets about the asteroid’s formation, finding out what lies below the surface of asteroids may also shed light on what happens when bodies collide in the Solar System, and provide clues about how planets form. The shape model used for this view is based on the images collected by JAXA's Hayabusa spacecraft.


This very detailed view shows the strange peanut-shaped asteroid Itokawa. By making exquisitely precise timing measurements using ESO’s New Technology Telescope a team of astronomers has found that different parts of this asteroid have different densities. As well as revealing secrets about the asteroid’s formation, finding out what lies below the surface of asteroids may also shed light on what happens when bodies collide in the Solar System, and provide clues about how planets form.

This picture comes from the Japanese spacecraft Hayabusa during its close approach in 2005.

Top illustration credit: ESO. Acknowledgement: JAXA. Bottom photo credit: JAXA

Note: For more information, see The Anatomy of an Asteroid.

Wednesday, March 31, 2010

All-Sky Map of Infrared Sources by AKIRA


This AKARI view of the sky shows infrared sources at 9 micrometers in blue, at 18 micrometers in green, and at 90 micrometers in red. The image is arranged with the Galactic Center in the middle, and the plane of the Galaxy running horizontally across the map. Emission from the photospheres of stars dominates the 9 micrometers catalog, where the galactic disc and nuclear bulge are clearly visible, whereas dust and star formation in the disc of our Galaxy become are more prominent at 90 micrometers. Away from the Galactic Plane, many extragalactic objects are detected, tracing galaxy evolution and star formation in the distant Universe.

Photo credit: JAXA

For more information, read ESA: AKARI Produces Two New Infrared All-Sky Catalogs.