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Centaurus A: A New Look at an Old Friend

  • A new Chandra image of Centaurus A, famous for its gargantuan jet, has been released.

  • The data in this image were taken from Chandra's archive and are equivalent to over 9 and half days of observations.

  • In this image, red, green, and blue show low, medium, and high-energy X-rays.

  • Archived data also allow for ongoing scientific studies, including new results on the black holes and neutron stars in Centaurus A.

Just weeks after NASA's Chandra X-ray Observatorybegan operations in 1999, the telescope pointed atCentaurus A (Cen A, for short). This galaxy, at a distance of about 12 millionlight years from Earth, contains a gargantuan jet blasting away from a centralsupermassive black hole.

Since then, Chandra has returned its attention to this galaxy, each time gathering more data. And, like an old family photo that has been digitally restored, new processing techniques are providing astronomers with a new look at this old galactic friend.

This new image of Cen A contains data from observations, equivalent to over nine and a half days worth of time, taken between 1999 and 2012. In this image, thelowest-energy X-rays Chandra detects are in red, while the medium-energy X-rays are green, and the highest-energy ones are blue.

As in all of Chandra's images of Cen A, this one shows the spectacular jet of outflowing material - seen pointing from the middle to the upper left - that is generated by thegiant black hole at the galaxy's center. This new high-energy snapshot of Cen A also highlights a dust lane that wraps around the waist of the galaxy. Astronomers think this feature is a remnant of a collision that Cen A experienced with a smaller galaxy millions of years ago.

The data housed in Chandra's extensive archive on Cen A provide a rich resource for a wide range of scientific investigations. For example, researchers published findings in 2013 on the point-like X-ray sources in Cen A. Most of these sources are systems where a compact object - either a black hole or aneutron star - is pulling gas from an orbiting companion star. These compact objects form by the collapse of massive stars, with black holes resulting from heavier stars thanneutron stars.

The results suggested that nearly all of the compact objects had masses that fell into two categories: either less than twice that of the Sun, or more than five times as massive as the Sun. These two groups correspond to neutron stars and black holes.

This mass gap may tell us about the waymassive stars explode. Scientists expect an upper limit on the most massive neutron stars, up to twice the mass of the Sun. What is puzzling is that the smallest black holes appear to weigh in at about five times the mass of the Sun. Stars are observed to have a continual range of masses, and so in terms of their progeny's weight we would expect black holes to carry on where neutron stars left off.

Although this mass gap between neutron stars and black holes has been seen in our galaxy, theMilky Way, this new Cen A result provides the first hints that the gap occurs in more distant galaxies. If it turns out to be ubiquitous, it may mean that a special, rapid type of stellar collapse is required in some supernova explosions.

The results described here were published in the April 1st, 2013 issue of The Astrophysical Journal and areavailable online. Mark Burke led the work when he was at the University of Birmingham in the UK and he is now at L'Institut de Recherche en Astrophysique et Planetologie in Toulouse, France. NASA's Marshall Space Flight Center in Huntsville, Ala., manages the Chandra program for NASA's Science Mission Directorate in Washington. The Smithsonian Astrophysical Observatory in Cambridge, Mass., controls Chandra's science and flight operations.

Fast Facts for Centaurus A:
Credit X-ray: NASA/CXC/U.Birmingham/M.Burke et al.
Release Date February 6, 2014
Scale Image is about 16.7 arcmin across (about 58,000 light years across)
Category Quasars & Active Galaxies
Coordinates (J2000) RA 13h 25m 27.62s | Dec -43° 01´ 08.80"
Constellation Centaurus
Observation Date 21 pointings between 05 Dec 1999 and 29 Aug 2012
Observation Time  229 hours 57 min (9 days 13 hours 57 min).
Obs. ID 316, 962, 2978, 3965, 7797-7799, 7800, 8489, 8490, 10722, 10723, 10724-10726, 11846, 11847, 12155, 12156, 13303, 13304
Instrument ACIS
Also Known As Cen A, NGC 5128
References Burke, M. et al. 2013, ApJ, 766, 88;arXiv:1302.0851
Color Code X-ray (Red, Green, Blue)
X-ray
Distance Estimate About 11 million light years
distance arrow
Visitor Comments (7)

Wonderful image! What is the bubble-like structure below the galaxy, and there seems to be a fainter one opposite it above the galaxy too?

Posted by Charles Rowland on Thursday, 05.29.14 @ 03:43am


What were the actual x-ray values used 10 keV 100 keV ? Perhaps they are elsewhere on this website. Wonderful image, and I'm glad to know the colors were mapped to the x-ray values in a logarithmically proportionate way, but I would like to know what those mappings are.

Posted by Brian Rudzewicz on Thursday, 02.20.14 @ 17:58pm


Great information,thanks.

Posted by rick moll on Thursday, 02.20.14 @ 00:11am


Terrific site, and great information. Well written and presentation is very clear, also love the way the spectrum and distances are laid out.

Posted by J. Hewitt on Wednesday, 02.19.14 @ 21:02pm


Astonishingly beautiful. What a privilege to see something like this. This goes in my "WOW" category

Posted by Dixie on Saturday, 02.15.14 @ 07:41am


This is so beautiful. So fascinating.

Posted by M.P on Friday, 02.7.14 @ 12:28pm


Thank you very much for bringing down "my old friend" from the sky to earth.

Posted by K.R.Subramanian on Thursday, 02.6.14 @ 11:11am


close
An active galaxy about 12 million light years from Earth.
About 12 million light years.
X-rays from the Chandra X-ray Observatory.
About 58,000 light years across.
X-rays are red, green and blue.
In the constellation Centaurus (Southern hemisphere).
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