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Vastitas Borealis - Wikipedia, the free encyclopedia

Vastitas Borealis

From Wikipedia, the free encyclopedia

Vastitas Borealis is the large low elevation area at the top of this topograpical map.
Vastitas Borealis is the large low elevation area at the top of this topograpical map.

Vastitas Borealis (Latin, 'northern waste' [1]) is the largest lowland region of Mars. It is in the northerly latitudes of the planet and encircles the northern polar region. Vastitas Borealis is often simply referred to as the Northern plains or Northern lowlands of Mars. The plains lie 4–5 km below the mean radius of the planet. To the north lies Planum Boreum.

The region was named by Eugene Antoniadi, who noted the distinct albedo feature of the Northern plains in his book La Planète Mars (1930). The name was officially adopted by the International Astronomical Union in 1973.[2]

Two distinct basins are recognized within the Vastitas Borealis: the North Polar Basin and Utopia Planitia. Some scientists have speculated the plains were covered by an ocean at some point in Mars' history and putative shorelines have been suggested for its southern edges. Today these mildly sloping plains are marked by ridges, low hills, and sparse cratering. Vastitas Borealis is noticeably smoother than similar topographical areas in the south.

In 2005 the European Space Agency's Mars Express spacecraft imaged a substantial quantity of water ice in a crater in the Vastitas Borealis region. The environmental conditions at the locality of this feature are suitable for water ice to remain stable. It was revealed after overlaying frozen carbon dioxide sublimated away at the commencement of the Northern Hemisphere Summer and is believed to be stable throughout the Martian year.[3]

A NASA probe named Phoenix landed safely in a region of Vastitas Borealis unofficially named Green Valley on May 25, 2008 (in the early Martian summer). Phoenix landed at 68.218830°N 234.250778°E.[4] The probe, which will remain stationary, is meant to collect and analyze soil samples in an effort to detect water and determine how hospitable the planet might once have been for life to grow. It will remain active there until it freezes around three months later. [5]

[edit] References

Proposed Phoenix landing ellipses, with geological context
Proposed Phoenix landing ellipses, with geological context
  1. ^ Charlton T. Lewis, Charles Short, A Latin Dictionary, Oxford. Clarendon Press. 1879. ISBN: 0198642016 [1]
  2. ^ USGS Planetary Nomenclature (click on the feature name for details)
  3. ^ Water ice in crater at Martian north pole. European Space Agency. Retrieved on 2007-08-04.
  4. ^ Lakdawalla, Emily (2008-05-27). Phoenix Sol 2 press conference, in a nutshell. The Planetary Society weblog. Planetary Society. Retrieved on 2008-06-04.
  5. ^ Mars lander aims for touchdown in 'Green Valley'. New Scientist Space. Retrieved on 2008-04-14.

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