Image of the Day: Spectacular Colliding Clusters of Massive Stars (Weekend Feature)
Astronomers using data from NASA's Hubble Space Telescope have caught two clusters full of massive stars that may be in the early stages of merging. The clusters are 170,000 light-years away in the Large Magellanic Cloud, a small satellite galaxy to our Milky Way.
The Hubble image above shows the clusters in the gigantic 30 Doradus nebula, which is 170,000 light-years from Earth. The Hubble observations, made with the Wide Field Camera 3, were taken Oct. 20-27, 2009. The blue color is light from the hottest, most massive stars; the green from the glow of oxygen; and the red from fluorescing hydrogen.
Lead scientist Elena Sabbi of the Space Telescope Science Institute in Baltimore, Md., and her team began looking at the area while searching for runaway stars, fast-moving stars that have been kicked out of their stellar nurseries where they first formed.
"Stars are supposed to form in clusters, but there are many young stars outside 30 Doradus that could not have formed where they are; they may have been ejected at very high velocity from 30 Doradus itself," Sabbi said.
She then noticed something unusual about the cluster when looking at the distribution of the low-mass stars detected by Hubble. It is not spherical, as was expected, but has features somewhat similar to the shape of two merging galaxies where their shapes are elongated by the tidal pull of gravity. Hubble’s circumstantial evidence for the impending merger comes from seeing an elongated structure in one of the clusters, and from measuring a different age between the two clusters.
According to some models, the giant gas clouds out of which star clusters form may fragment into smaller pieces. Once these small pieces precipitate stars, they might then interact and merge to become a bigger system. This interaction is what Sabbi and her team think they are observing in 30 Doradus.
There are an unusually large number of high-velocity stars around 30 Doradus. Astronomers believe that these stars, often called "runaway stars" were expelled from the core of 30 Doradus as the result of dynamical interactions. These interactions are very common during a process called core collapse, in which more-massive stars sink to the center of a cluster by dynamical interactions with lower-mass stars. When many massive stars have reached the core, the core becomes unstable and these massive stars start ejecting each other from the cluster.
The big cluster R136 in the center of the 30 Doradus region is too young to have already experienced a core collapse. However, since in smaller systems the core collapse is much faster, the large number of runaway stars that has been found in the 30 Doradus region can be better explained if a small cluster has merged into R136.
Follow-up studies will look at the area in more detail and on a larger scale to see if any more clusters might be interacting with the ones observed. In particular, the infrared sensitivity of NASA’s planned James Webb Space Telescope (JWST) will allow astronomers to look deep into the regions of the Tarantula Nebula that are obscured in visible-light photographs. In these areas cooler and dimmer stars are hidden from view inside cocoons of dust. Webb will better reveal the underlying population of stars in the nebula.
The 30 Doradus Nebula is particularly interesting to astronomers because it is a good example of how star-forming regions in the young universe may have looked. This discovery could help scientists understand the details of cluster formation and how stars formed in the early universe.
The Daily Galaxy via NASA, ESA, R. O'Connell (University of Virginia), and the Wide Field Camera 3 Science Oversight Committee
Comments
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The picture is beautiful but the story kind of gives me a problem.
The story seems like a lot of guess work and supposition. And with statements like "She then noticed something unusual about the cluster" directly followed by "It is not spherical, as was expected,". She expects the unusual! And things like "think they are observing" and "they might then interact" gives it a just not sure feeling. So the problem it gives me is I always HATE when storys are reported as facts when there are so many different possibilities. But now I can see what happens when just the opposite happens and I am not sure its any better. Maybe its the way its written, I dont know.
Posted by: smartypants | August 19, 2012 at 07:02 AM
The elongated shape instead of the expected spherical shape for gravity is not explained by their guesswork and interpretations. See the better electromagnetic interpretation of these connecting plasma filaments and this new feature story at my blog http://HOLOGRAPHICGALAXY.BLOGSPOT.com
Posted by: Holo | August 19, 2012 at 09:12 AM
Ditto, Smartypants. What's ironic is that because they continually present suppositions and guesses as facts, no one ever seems to agree with anyone else. It's as though good science is whatever one wants it to be. Still, I'm glad to know what they're thinking, and if I want to know more, I do a little investigating of my own...keeps me in touch with what's happening in the cosmos.
Posted by: Tosca Zraikat | August 19, 2012 at 06:07 PM