Hubble image archive

Abell 370 Parallel Field with Asteroids

Like rude relatives who jump in front your vacation snapshots of landscapes, some of our solar system's asteroids have photobombed deep images of the universe taken by NASA's Hubble Space Telescope. These asteroids reside, on average, only about 160 million miles from Earth — rig...

Date
Jan 1, 2017
Mission
Hubble Space Telescope
Archive ID
hubblesite-images-2017-33-4080-image
By

Like rude relatives who jump in front your vacation snapshots of landscapes, some of our solar system's asteroids have photobombed deep images of the universe taken by NASA's Hubble Space Telescope. These asteroids reside, on average, only about 160 million miles from Earth — right around the corner in astronomical terms. Yet they've horned their way into this picture of thousands of galaxies scattered across space and time at inconceivably farther distances.

This Hubble photo of a random patch of sky is part of a survey called Frontier Fields. The colorful image contains thousands of galaxies, including massive yellowish ellipticals and majestic blue spirals. Much smaller, fragmentary blue galaxies are sprinkled throughout the field. The reddest objects are most likely the farthest galaxies, whose light has been stretched into the red part of the spectrum by the expansion of space.

Intruding across the picture are asteroid trails that appear as curved or S-shaped streaks. Rather than leaving one long trail, the asteroids appear in multiple Hubble exposures that have been combined into one image. Of the 20 total asteroid sightings for this field, seven are unique objects. Of these seven asteroids, only two were earlier identified. The others were too faint to be seen previously.

The trails look curved due to an observational effect called parallax. As Hubble orbits around Earth, an asteroid will appear to move along an arc with respect to the vastly more distant background stars and galaxies.

This parallax effect is somewhat similar to the effect you see from a moving car, in which trees by the side of the road appear to be passing by much more rapidly than background objects at much larger distances. The motion of Earth around the Sun, and the motion of the asteroids along their orbits, are other contributing factors to the apparent skewing of asteroid paths.

All the asteroids were found manually, the majority by "blinking" consecutive exposures to capture apparent asteroid motion. Astronomers found a unique asteroid for every 10 to 20 hours of exposure time.

The Frontier Fields program is a collaboration among NASA's Great Observatories and other telescopes to study six massive galaxy clusters and their effects. Using a different camera, pointing in a slightly different direction, Hubble photographed six so-called "parallel fields" at the same time it photographed the massive galaxy clusters. This maximized Hubble's observational efficiency in doing deep space exposures. These parallel fields are similar in depth to the famous Hubble Deep Field, and include galaxies about four-billion times fainter than can be seen by the human eye.

This picture is of the parallel field for the galaxy cluster Abell 370. It was assembled from images taken in visible and infrared light. The field's position on the sky is near the ecliptic, the plane of our solar system. This is the zone in which most asteroids reside, which is why Hubble astronomers saw so many crossings. Hubble deep-sky observations taken along a line-of-sight near the plane of our solar system commonly record asteroid trails.

The Hubble Space Telescope is a project of international cooperation between NASA and ESA (European Space Agency). NASA's Goddard Space Flight Center in Greenbelt, Maryland, manages the telescope. The Space Telescope Science Institute (STScI) in Baltimore conducts Hubble science operations. STScI is operated for NASA by the Association of Universities for Research in Astronomy, Inc., in Washington, D.C.

Credits

NASA, ESA, and B. Sunnquist and J. Mack (STScI)
Acknowledgment: NASA, ESA, and J. Lotz (STScI) and the HFF Team

Image Details

About The Object
Object NameAbell 370 Parallel Field
Object DescriptionAsteroids in Foreground of Hubble Frontier Fields Image
R.A. Position02:40:18.823
Dec. Position-01:36:12.269
ConstellationCetus
Distance4 billion light-years (to Abell 370)
DimensionsImage is 1 arcmin across (about 1.16 million light-years at distance of Abell 370)
About The Data
Data DescriptionAbell 370 is part of the Frontier Fields Program. These data are from the HST proposals (PI: E. Hu, University of Hawaii), (PI: K. Noll, GSFC), (PI: J.-P. Kneib, Laboratoire d'Astrophysique de Marseille), (PI: T. Treu, UCLA), (PI: S. Rodney, JHU), (PI: J. Lotz, STScI), and (R. Kirshner, Harvard University). For more information, see .
InstrumentHST ACS/WFC; WFC3/IR
Exposure DatesSeptember 2009 - February 2015
FiltersACS/WFC: F435W, F606W, and F814W; WFC3/IR: F105W, F125W, F140W, and F160W
About The Image
Color InfoThis image is a composite of separate exposures made by the WFC3 instrument on the Hubble Space Telescope using two different cameras and filters isolating the light of specific elements or of specific broad wavelength ranges. The color arises by assigning different hues (colors), to each monochromatic image. In this case, the colors are: blue WFC3/UVIS F435W + F606W, green WFC3/UVIS F814W + WFC3/IR F015W, orange/red WFC3/IR F125W + F140W + F160W.

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Source

Image and source material are credited to the official mission archive linked below.

View on NASA.gov

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