Astronomy:Boötes void

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Short description: Enormous, approximately-spherical region of space containing very few galaxies
A map of the Boötes void

The Boötes void (/bˈtz/)[1] (colloquially referred to as the Great Nothing)[1] is an approximately spherical region of space found in the vicinity of the constellation Boötes, containing very few galaxies, hence its name. It is enormous, with a radius of 62 megaparsecs. Its centre is located at approximately right ascension  14h 50m and declination 46°.[2]

Description

Artist's conception of the Boötes Void and the filaments and walls that surround it.

At nearly 330 million light-years in diameter[3] (approximately 0.27% of the diameter of the observable Universe), or nearly 236,000 Mpc3 in volume, the Boötes void is one of the largest known voids in the Universe, and is referred to as a supervoid. Its discovery was reported by Robert Kirshner et al. (1981) as part of a survey of galactic redshifts. The centre of the Boötes void is approximately 700 million light-years from Earth.[4]

Other astronomers soon discovered that the void contains a few galaxies. In 1987, J. Moody, Robert P. Kirshner, G. MacAlpine, and S. Gregory published their findings of eight galaxies in the void.[5] M. Strauss and John Huchra announced the discovery of three more galaxies in 1988, and Greg Aldering, G. Bothun, Robert P. Kirshner, and Ron Marzke announced the discovery of fifteen galaxies in 1989. By 1997, the Boötes void was known to contain 60 galaxies in a space that would usually roughly have 2000.

According to astronomer Greg Aldering, the scale of the void is such that "If the Milky Way had been in the centre of the Boötes void, we wouldn't have known there were other galaxies until the 1960s."[6]

The Hercules Supercluster forms part of the near edge of the void.[2]

Origins

A map of galaxy voids

There are no major apparent inconsistencies between the existence of the Boötes void and the Lambda-CDM model of cosmological evolution.[7] It has been theorized that the Boötes void was formed from the merging of smaller voids, much like the way in which soap bubbles coalesce to form larger bubbles.[8] This would account for the small number of galaxies that populate a roughly tube-shaped region running through the middle of the void.[6]

Confusion with Barnard 68

The Boötes void has been often associated with images of Barnard 68, a dark nebula that does not allow light to pass through; however, the images of Barnard 68 are much darker than those observed of the Boötes void, as the nebula is much closer and there are fewer stars in front of it, as well as its being a physical mass that blocks light passing through. There are two pages published by the European Southern Observatory team that describe their investigation of dark globules, and Barnard 68 (B68) in particular. [9][10]

See also

Footnotes

  1. Cowen, Ron (2000). "Big, Bigger... Biggest?". Science News 158 (7): 104–105. doi:10.2307/3981218. 
  2. 2.0 2.1 Kirshner, Robert P.; Oemler, Augustus, Jr.; Schechter, Paul L.; Shectman, Stephen A. (1 March 1987). "A survey of the Bootes void". Astrophysical Journal, Part 1 314: 493–506. doi:10.1086/165080. ISSN 0004-637X. Bibcode1987ApJ...314..493K. 
  3. "A Spongy Universe". http://genesismission.jpl.nasa.gov/educate/scimodule/Cosmogony/CosmogonyPDF/SpongyUniverseST.pdf. 
  4. "The Bootes Void". http://www.acceleratingfuture.com/michael/blog/2006/04/the-bootes-void/. 
  5. Moody, J. Ward; Kirshner, Robert P.; MacAlpine, Gordon M.; Gregory, Stephen A. (March 1987). "Emission-line galaxies in the Bootes void". The Astrophysical Journal 314: L33. doi:10.1086/184846. Bibcode1987ApJ...314L..33M. 
  6. 6.0 6.1 "Filling the void – understanding the formation of the Bootes void in intergalactic space – Brief Article". Discover magazine. August 1995. http://findarticles.com/p/articles/mi_m1511/is_n8_v16/ai_17253874. 
  7. "Cosmic_Voids" Retrieved on 10 June 2013
  8. McCracken, Jason (13 July 2013). "Next Stop: Voids". https://asd.gsfc.nasa.gov/blueshift/index.php/2013/07/30/jasons-blog-next-stop-voids/. 
  9. "Secrets of a Dark Cloud" Retrieved on 02 August 2022
  10. "How to Become a Star: ESO Telescopes Provide Most Detailed View Ever Into a Dark Cloud"

References

Coordinates: Sky map 14h 50m 0s, +46° 0′ 0″