Earth's getting 'soft' in the middle

January 24, 2008 Earth

Since we can’t sample the deepest regions of the Earth, scientists watch the velocity of seismic waves as they travel through the planet to determine the composition and density of that material. Now a new study suggests that material in part of the lower mantle has unusual electronic characteristics that make sound propagate more slowly, suggesting that the material there is softer than previously thought.

The results call into question the traditional techniques for understanding this region of the planet. The authors, including Alexander Goncharov from the Carnegie Institution’s Geophysical Laboratory, present their results in the January 25, 2008, issue of Science.

The lower mantle extends from about 400 miles to 1800 miles (660-2900 kilometers) into Earth and sits atop the outer core. Pressures and temperatures are so brutal there that materials are changed into forms that don’t exist in rocks at the planet’s surface and must be studied under carefully controlled conditions in the laboratory. The pressures range from 230,000 times the atmospheric pressure at sea level (23 GPa), to 1.35 million times sea-level pressure (135 GPa). And the heat is equally extreme—from about 2,800 to 6,700 degrees Fahrenheit (1800K–4000K).

Iron is abundant in the Earth, and is a major component of the minerals ferropericlase and the silicate perovskite in the lower mantle. In previous work, researchers found that the outermost electrons of iron in ferropericlase are forced to pair up under the extreme pressures creating a so-called spin-transition zone within the lower mantle.

“What happens when unpaired electrons—called a high-spin state—are forced to pair up is that they transition to what is called a low-spin state. And when that happens, the conductivity, density, and chemical properties change,” explained Goncharov.

“What’s most important for seismology is the acoustic properties—the propagation of sound. We determined the elasticity of ferropericlase through the pressure-induced high-spin to low-spin transition. We did this by measuring the velocity of acoustic waves propagating in different directions in a single crystal of the material and found that over an extended pressure range (from about 395,000 to 590,000 atmospheres) the material became ‘softer’—that is, the waves slowed down more than expected from previous work. Thus, at high temperature corresponding distributions will become very broad, which will result in a wide range of depth having subtly anomalous properties that perhaps extend through most of the lower mantle.”

Source: Carnegie Institution


print this article email this article download pdf blog this article bookmark this article     Stumble it Digg this share on Facebook retweet share on Reddit add to delicious
Rate this story - 4.4 /5 (19 votes)

Rank Filter

Move the slider to adjust rank threshold, so that you can hide some of the comments.


Display comments: newest first

  • ModernMan - Jan 25, 2008
    • Rank: 2.8 / 5 (5)
    The picture of the Earth looked strange to me, and I couldn't figure out why. Then I realized that it's not very often that the eastern hemisphere is pictured in US news stories.
  • out7x - Jan 25, 2008
    • Rank: 1 / 5 (2)
    P or S waves? anisotropy due to pressure, or heat, or crystal?

January 24, 2008 all stories

Comments: 2

4.4 /5 (19 votes)
  • Stumble this up

  • Digg this

  • share this

  • hide
  • Related Stories




  • hide
  • Relevant PhysicsForums posts

  • cycles
    created Nov 08, 2009
  • The Origin of the term 'fossil' fuels
    created Nov 05, 2009
  • co2
    created Nov 03, 2009
  • Early Earths Sulfidic Ocean Conditions
    created Oct 30, 2009
  • More from Physics Forums - Earth

Other News

Planetary Society plans new 'solar sail'

Space & Earth / Space Exploration

created 44 minutes ago | popularity not rated yet | comments 0

(AP) -- Four years after its first solar sail ended up in the ocean instead of orbit, The Planetary Society announced Monday that by the end of 2010 it will try again to launch a spacecraft that will be propelled by the ...


Australian scientists call for urgent 'global cooling' to save coral reefs

Space & Earth / Environment

created 1hour ago | popularity 5 / 5 (1) | comments 0

(PhysOrg.com) -- Australian marine scientists have issued an urgent call for massive and rapid worldwide cuts in carbon emissions, deep enough to prevent atmospheric CO2 levels rising to 450 parts per million (ppm).


L-R: Chiwetel Ejiofor, Amanda Peet and John Cusack at the premiere of "2012"

NASA on crusade to debunk 2012 apocalypse myths

Space & Earth / Space Exploration

created 6 hours ago | popularity not rated yet | comments 0

The world is not coming to an end on December 21, 2012, the US space agency insisted Monday in a rare campaign to dispel widespread rumors fueled by the Internet and a new Hollywood movie.


Antarctica glacier retreat creates new carbon dioxide store

Antarctica glacier retreat creates new carbon dioxide store

Space & Earth / Earth Sciences

created 10 hours ago | popularity 4.3 / 5 (3) | comments 0

Large blooms of tiny marine plants called phytoplankton are flourishing in areas of open water left exposed by the recent and rapid melting of ice shelves and glaciers around the Antarctic Peninsula. This ...


NASA satellites make a movie and get rainfall, wind info on Ida

NASA satellites make a movie and get rainfall, wind info on Ida (w/ Video)

Space & Earth / Earth Sciences

created 6 hours ago | popularity not rated yet | comments 0

NASA satellites are amazing examples of technology. The TRMM satellite peers into tropical cyclones and can tell how much rain is falling per hour and where. QuikScat uses microwave technology to measure Ida's ...