Space Travel News  
Assembling The Most Massive Galaxies In The Universe

File image.
by Staff Writers
Zurich, Switzerland (SPX) Aug 27, 2008
Astronomers have caught multiple massive galaxies in the act of merging about 4 billion years ago. This discovery, made possible by combining the power of the best ground- and space-based telescopes, uniquely supports the favoured theory of how galaxies form.

How do galaxies form? The most widely accepted answer to this fundamental question is the model of 'hierarchical formation', a step-wise process in which small galaxies merge to build larger ones. One can think of the galaxies forming in a similar way to how streams merge to form rivers, and how these rivers, in turn, merge to form an even larger river.

This theoretical model predicts that massive galaxies grow through many merging events in their lifetime. But when did their cosmological growth spurts finish? When did the most massive galaxies get most of their mass?

To answer these questions, astronomers study massive galaxies in clusters, the cosmological equivalent of cities filled with galaxies.

"Whether the brightest galaxies in clusters grew substantially in the last few billion years is intensely debated. Our observations show that in this time, these galaxies have increased their mass by 50%," says Kim-Vy Tran from the University of Zurich, Switzerland, who led the research.

The astronomers made use of a large ensemble of telescopes and instruments, including ESO's Very Large Telescope (VLT) and the Hubble Space Telescope, to study in great detail galaxies located 4 billion light-years away. These galaxies lie in an extraordinary system made of four galaxy groups that will assemble into a cluster.

In particular, the team took images with VIMOS and spectra with FORS2, both instruments on the VLT. From these and other observations, the astronomers could identify a total of 198 galaxies belonging to these four groups.

The brightest galaxies in each group contain between 100 and 1000 billion of stars, a property that makes them comparable to the most massive galaxies belonging to clusters.

"Most surprising is that in three of the four groups, the brightest galaxy also has a bright companion galaxy. These galaxy pairs are merging systems," says Tran.

The brightest galaxy in each group can be ordered in a time sequence that shows how luminous galaxies continue to grow by merging until recently, that is, in the last 5 billion years. It appears that due to the most recent episode of this 'galactic cannibalism', the brightest galaxies became at least 50% more massive.

This discovery provides unique and powerful validation of hierarchical formation as manifested in both galaxy and cluster assembly.

"The stars in these galaxies are already old and so we must conclude that the recent merging did not produce a new generation of stars," concludes Tran. "Most of the stars in these galaxies were born at least 7 billion years ago."

The team is composed of Kim-Vy H. Tran (Institute for Theoretical Physics, University of Zurich, Switzerland), John Moustakas (New York University, USA), Anthony H. Gonzalez and Stefan J. Kautsch (University of Florida, Gainesville, USA), and Lei Bai and Dennis Zaritsky (Steward Observatory, University of Arizona, USA). The results presented here are published in the Astrophysical Journal Letters: "The Late Stellar Assembly Of Massive Cluster Galaxies Via Major Merging", by Tran et al.

Related Links
Institute for Theoretical Physics, University of Zurich
Stellar Chemistry, The Universe And All Within It



Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News


XMM-Newton's Massive Discovery
Paris, France (ESA) Aug 26, 2008
ESA's orbiting X-ray observatory XMM-Newton has discovered the most massive cluster of galaxies seen in the distant Universe until now. The galaxy cluster is so big that there can only be a handful of them at that distance, making this a rare catch indeed. The discovery confirms the existence of dark energy.







  • Test rocket destroyed by NASA after launch
  • NASA to use shock-absorbers to fix shaking in new Ares rocket
  • NASA And ATK To Launch Suborbital Hypersonic Experiments
  • Andrews Awarded Aerojet Contract To Build Hardware For Sundancer

  • Arianespace To Launch Koreasat 6
  • Inmarsat Selects ILS Proton To Launch S-Band Satellite For Europe
  • Forecast International Projects 50 Billion Dollar ELV Market
  • Successful Launch For Third Inmarsat-4 Satellite

  • NASA's Space Shuttle Atlantis To Move To Launch Pad Saturday
  • Kennedy Space Center reopening delayed
  • NASA Keeps Atlantis Target Launch Date
  • LockMart External Tank Is Pacing Item For Hubble Space Telescope Launch

  • ISS Program Facing Hard Choices
  • US-Russia chill threatens NASA space program
  • ISS Orbit Adjustment Complete
  • ISS Crew Inspired By Vision And Dreams Of Jules Verne

  • Ares Progress Report For August
  • Going Looney In Space
  • Elegant Resorts And Virgin Galactic Make Space Travel A Reality
  • Oceaneering Will Resubmit Constellation Space Suit Proposal

  • China to launch Venezuela's first satellite: Chavez
  • China's Space Ambitions
  • Rocket For China's Manned Space Mission At Launch Center
  • China To Release 700 Hours Of Chang'e-1 Data

  • Robot-assisted surgery repairs fistulas
  • Japanese Researchers Eye e-Skin For Robots
  • Robots may enhance disabled people's lives
  • Robo-relationships are virtually assured: British experts

  • Ice Cold Sunrise On Mars
  • NASA's Mars Rover Opportunity Climbing Out Of Crater
  • Seeing Mars In A Particle Of Dust
  • Phoenix Digs Deeper As Third Month Nears End

  • The content herein, unless otherwise known to be public domain, are Copyright Space.TV Corporation. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space.TV Corp on any Web page published or hosted by Space.TV Corp. Privacy Statement