Chandra Catches Early Phase Of Cosmic Assembly | Aero-News Network
Aero-News Network
RSS icon RSS feed
podcast icon MP3 podcast
Subscribe Aero-News e-mail Newsletter Subscribe

Airborne Unlimited -- Most Recent Daily Episodes

Episode Date

Airborne-Monday

Airborne-Tuesday

Airborne-Wednesday Airborne-Thursday

Airborne-Friday

Airborne On YouTube

Airborne-Unlimited-06.03.24

Airborne-NextGen-06.04.24

Airborne-Unlimited-06.05.24 Airborne-Unlimited-05.30.24

Airborne-Unlimited-05.24.24

Sun, Aug 15, 2004

Chandra Catches Early Phase Of Cosmic Assembly

X-Ray Observatory reveals details of complex hot gas clouds

A NASA Chandra X-ray Observatory image has revealed a complex of several intergalactic hot gas clouds in the process of merging. The superb Chandra spatial resolution made it possible to distinguish individual galaxies from the massive clouds of hot gas. One of the clouds, which envelopes hundreds of galaxies, has an extraordinarily low concentration of iron atoms, indicating that it is in the very early stages of cluster evolution.

"We may be seeing hot intergalactic gas in a relatively pristine state before it has been polluted by gas from galaxies," said Q. Daniel Wang of the University of Massachusetts in Amherst, and lead author on an upcoming Astrophysical Journal article describing the study. "This discovery should provide valuable insight into how the most massive structures in the universe are assembled."

The complex, known as Abell 2125, is about 3 billion light years from Earth and is seen at a time about 11 billion years after the Big Bang. This is a period when astronomers believe many galaxy clusters are formed. Chandra's Abell 2125 image shows several huge elongated clouds of multimillion-degree-gas coming together from different directions. These hot gas clouds, each of which contains hundreds of galaxies, appear to be in the process of merging to form a single massive galaxy cluster.

Chandra, Hubble Space Telescope, and Very Large Array radio telescope data show that several galaxies in the Abell 2125 core cluster are being stripped of their gas as they fall through surrounding high-pressure hot gas. This stripping process has enriched the core cluster's gas in heavy elements such as iron.

The gas in the pristine cloud, which is still several million light years away from the core cluster, is conspicuous for its lack of iron atoms.  This anemic cloud must be in a very early evolutionary stage. The iron atoms produced by supernovas in the embedded galaxies must still be contained in and around the galaxies, perhaps in grains of dust not well mixed with the observed X-ray-emitting gas. Over time, as the cluster merges with the other clusters and the hot gas pressure increases, the dust grains will be driven from the galaxies, mixed with the hot gas, and destroyed, liberating the iron atoms.

Building a massive galaxy cluster is a step-by-step enterprise that takes billions of years.  Exactly how long it takes for such a cluster to form depends on many factors, such as the density of subclusters in the vicinity, the rate of the expansion of the universe, and the relative amounts of dark energy and dark matter.

Cluster formation also involves complex interactions between the galaxies and the hot gas that may determine how large the galaxies in the cluster can ultimately become. These interactions determine how the galaxies maintain their gas content, the fuel for star formation. The observations of Abell 2125 provide a rare glimpse into the early steps in this process.

Frazer Owen (National Radio Astronomy Observatory) and Michael Ledlow (Gemini Observatory) are co-authors on the upcoming Astrophysical Journal paper.  Chandra observed Abell 2125 with its Advanced CCD Imaging Spectrometer on August 24, 2001, for approximately 22 hours.

FMI: http://chandra.harvard.edu, http://chandra.nasa.gov

Advertisement

More News

Airborne 06.05.24: Yakstars Midair, Electra eSTOL Test, Space Tour No-Go

Also: Aerox 'Cylinder Sentinel', Annual TBM Reunion, Hubble Pause, Utah AAM A combined Spanish-Portuguese aerobatic demo team suffered a fatality at the Beja AirShow, when one of t>[...]

Classic Aero-TV: Aviation Prop Masters--Hartzell Composite Props for the KingAir

From 2019 (YouTube Version): Hartzell Propeller Secures STC For King Air Propellers Hartzell Propeller has secured an FAA Type Certificate for a new five-blade carbon fiber propell>[...]

Aero-News: Quote of the Day (06.03.24)

"Starship’s third flight test made tremendous strides towards a future of rapidly reliable reusable rockets. The test completed several exciting firsts, including the first S>[...]

ANN's Daily Aero-Linx (06.03.24)

Aero Linx: Utah Back Country Pilots Association (UBCP) We hope to promote flying in Utah, and we welcome you to our state. We recognize the inherent hazards and risk involved in ba>[...]

ANN's Daily Aero-Term (06.03.24):Maximum Authorized Altitude

Maximum Authorized Altitude A published altitude representing the maximum usable altitude or flight level for an airspace structure or route segment. It is the highest altitude on >[...]

blog comments powered by Disqus



Advertisement

Advertisement

Podcasts

Advertisement

© 2007 - 2024 Web Development & Design by Pauli Systems, LC