News Release

Orphaned star clusters roam the universe

Peer-Reviewed Publication

CSIRO Australia



Caption: This Hubble Space Telescope image shows an example of a typical nearby globular star cluster, called simply NGC6903, located in our own Milky Way galaxy. The Milky Way has about 150 of these sphere-shaped star groups, each containing up to a million stars. The team has been studying other globular star clusters that are wandering in the otherwise empty space between distant galaxies, and are so far away that they just look like tiny white dots in the black vastness of intergalactic space.
Image credit: Hubble Heritage Team (AURA/STScI/NASA)

Full size image available through contact

US and UK astronomers have discovered a population of previously unknown star clusters in what was thought to be the empty space between galaxies. The research is being presented today at the International Astronomical Union's 25th General Assembly being held in Sydney, Australia by Dr. Michael West of the University of Hawaii.

Most galaxies are surrounded by tens, hundreds or even thousands of ancient star clusters, which swarm around them like bees around a hive. Our own Milky Way galaxy has about 150 of these "globular clusters", as they are called. Globular clusters are systems of up to a million stars compacted together by gravity into dense sphere-shaped groupings. Studies of globular clusters have provided many important insights over the years into the formation of their parent galaxies.

The discovery of this new type of star cluster was made using images obtained last year with the Hubble Space Telescope and the giant 10-meter Keck Telescope on Mauna Kea, Hawaii. "We found a large number of 'orphaned' globular clusters," said Dr West. "These clusters are no longer held within the gravitational grip of galaxies, and seem to be wandering freely through intergalactic space like cosmic vagabonds."

Although the lonely existence of such star clusters had been predicted for half a century, it is only now that astronomers have finally been able to confirm their existence. Dr West's team published preliminary findings about its discovery in April this year, and is today presenting new results at the International Astronomical Union's 25th General Assembly, being held in Sydney, Australia.

"The new data from the Hubble Space Telescope and Keck Telescope confirm our discovery, and are providing new insights to the origin of these objects," said Dr West.

According to West, these globular star clusters probably once resided in galaxies just like most of the normal globular clusters that we see in nearby galaxies today. However, the pull of gravity from a passing galaxy can rip stars and star clusters loose -- in some cases entire galaxies can be damaged or destroyed by violent collisions or by the collective gravitational pull from their galactic neighbors.

It is thought that the partial or complete destruction of their parent galaxies spilled the globular star clusters into intergalactic space.

Finding these globular clusters hasn't been easy. With only one exception, all of the intergalactic globular clusters the teams have detected are so far away (millions of light-years) that they just look like tiny points of light in a vast sea of blackness.

"Because they're so far away these objects are very faint, almost a billion times fainter than the unaided human eye can see," said Dr West. "Detecting such faint objects pushes the limits of even what the Hubble Space Telescope can do."

"By studying these intergalactic vagabonds in greater detail we hope to learn more about the numbers and types of galaxies that may have been destroyed so far during the life of the universe," said Dr West. "Some of these star clusters might also eventually be 'adopted' by other galaxies if they stray close enough to be captured by their gravity."

The researchers are currently analyzing new Hubble Space Telescope images they recently obtained, and are planning to obtain more at the end of this year.

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Collaborators on this research (which involves two separate but complementary teams) are:

Dr. Michael West (University of Hawaii, USA)
Dr. Patrick Cote (Rutgers University, USA)
Dr. Ronald Marzke (San Francisco State University, USA)
Dr. Andres Jordan (Rutgers University, USA)
Dr. Michael Gregg (University of California, Davis, USA)
Dr. Henry Ferguson (Space Telescope Science Institute, USA)
Dr. Ted von Hippel (University of Texas, USA)
Dr. Nial Tanvir (University of Hertfordshire, England)

GRAPHICS:

http://www.astro.uhh.hawaii.edu/west/pub/IAU/West-figure1.jpg (139KB, 870x879 pixels, color)
http://www.astro.uhh.hawaii.edu/west/pub/IAU/West-figure1.tif (759KB, 870x879 pixels, color)
Caption: This image taken by the Hubble Space Telescope shows a small region of space within a large group of several thousand galaxies, about 400 million light-years from Earth. The boxes indicate four of the numerous "orphaned" star clusters that were recently discovered by a team of astronomers led by Dr Michael West of the University of Hawaii. Image credit: Dr. Michael J. West (University of Hawaii)

http://www.astro.uhh.hawaii.edu/west/pub/IAU/NGC6093-HST.jpg (294KB, 800x1000 pixels) Caption: This Hubble Space Telescope image shows an example of a typical nearby globular star cluster, called simply NGC6903, located in our own Milky Way galaxy. The Milky Way has about 150 of these sphere-shaped star groups, each containing up to a million stars. The team has been studying other globular star clusters that are wandering in the otherwise empty space between distant galaxies, and are so far away that they just look like tiny white dots in the black vastness of intergalactic space. Image credit: Hubble Heritage Team (AURA/STScI/NASA)

CONTACTS:

Dr. Michael West
Department of Physics & Astronomy, University of Hawaii at Hilo
Tel: 808-974-7744
Email: west@astro.uhh.hawaii.edu

Dr West will be attending the first week of the IAU General Assembly in Sydney, Australia. From July 14 to 20, he can be contacted at the Novotel Darling Harbour Hotel, Sydney, on telephone 61-2-9934-0000, or via the Media Room (see below).

HOW TO CONTACT the Media Room at the IAU General Assembly in Sydney, Australia, July 13-26, 2003.

Tel: 61-2-9282 5418, 5419, 5420
Fax: 61-2-9282 5421
Email: iaumedia@netscape.net Chief Media Liaison: Helen Sim, mobile phone number 61-419-635-905

The Media Room will be open from 8am to 6pm Australian Eastern Standard Time (10 hours ahead of GMT/UT).


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