Subscribe free to our newsletters via your
. 24/7 Space News .




STELLAR CHEMISTRY
Dark Matter Mystery Deepens
by Staff Writers
Cambridge MA (SPX) Oct 24, 2011


This artist's conception shows a dwarf galaxy seen from the surface of a hypothetical exoplanet. A new study finds that the dark matter in dwarf galaxies is distributed smoothly rather than being clumped at their centers. This contradicts simulations using the standard cosmological model known as lambda-CDM. Credit: David A. Aguilar (CfA).

Like all galaxies, our Milky Way is home to a strange substance called dark matter. Dark matter is invisible, betraying its presence only through its gravitational pull. Without dark matter holding them together, our galaxy's speedy stars would fly off in all directions. The nature of dark matter is a mystery - a mystery that a new study has only deepened.

"After completing this study, we know less about dark matter than we did before," said lead author Matt Walker, a Hubble Fellow at the Harvard-Smithsonian Center for Astrophysics.

The standard cosmological model describes a universe dominated by dark energy and dark matter. Most astronomers assume that dark matter consists of "cold" (i.e. slow-moving) exotic particles that clump together gravitationally. Over time these dark matter clumps grow and attract normal matter, forming the galaxies we see today.

Cosmologists use powerful computers to simulate this process. Their simulations show that dark matter should be densely packed in the centers of galaxies. Instead, new measurements of two dwarf galaxies show that they contain a smooth distribution of dark matter. This suggests that the standard cosmological model may be wrong.

"Our measurements contradict a basic prediction about the structure of cold dark matter in dwarf galaxies. Unless or until theorists can modify that prediction, cold dark matter is inconsistent with our observational data," Walker stated.

Dwarf galaxies are composed of up to 99 percent dark matter and only one percent normal matter like stars. This disparity makes dwarf galaxies ideal targets for astronomers seeking to understand dark matter.

Walker and his co-author Jorge Penarrubia (University of Cambridge, UK) analyzed the dark matter distribution in two Milky Way neighbors: the Fornax and Sculptor dwarf galaxies. These galaxies hold one million to 10 million stars, compared to about 400 billion in our galaxy. The team measured the locations, speeds and basic chemical compositions of 1500 to 2500 stars.

"Stars in a dwarf galaxy swarm like bees in a beehive instead of moving in nice, circular orbits like a spiral galaxy," explained Penarrubia. "That makes it much more challenging to determine the distribution of dark matter."

Their data showed that in both cases, the dark matter is distributed uniformly over a relatively large region, several hundred light-years across. This contradicts the prediction that the density of dark matter should increase sharply toward the centers of these galaxies.

"If a dwarf galaxy were a peach, the standard cosmological model says we should find a dark matter 'pit' at the center. Instead, the first two dwarf galaxies we studied are like pitless peaches," said Penarrubia.

Some have suggested that interactions between normal and dark matter could spread out the dark matter, but current simulations don't indicate that this happens in dwarf galaxies. The new measurements imply that either normal matter affects dark matter more than expected, or dark matter isn't "cold." The team hopes to determine which is true by studying more dwarf galaxies, particularly galaxies with an even higher percentage of dark matter.

The paper discussing this research was accepted for publication in The Astrophysical Journal and is available online.

.


Related Links
Harvard-Smithsonian Center For Astrophysics
Stellar Chemistry, The Universe And All Within It






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








STELLAR CHEMISTRY
'Dark energy' targeted in European space mission
Paris (AFP) Oct 4, 2011
So-called dark energy, believed to play a role in the accelerated expansion of the Universe, will be studied in a major science mission to be launched later this decade, the European Space Agency (ESA) said on Tuesday. A space telescope known as Euclid will be launched in 2019 with the goal of mapping the geometry of the Universe across an unprecedented 10 billion light years. It will se ... read more


STELLAR CHEMISTRY
Lunar Probe to search for water on Moon

Subtly Shaded Map of Moon Reveals Titanium Treasure Troves

NASA's Moon Twins Going Their Own Way

Titanium treasure found on Moon

STELLAR CHEMISTRY
Opportunity Past 21 Miles of Driving! Will Spend Winter at Cape York

Scientists develope new way to determine when water was present on Mars and Earth

Mars Rover Carries Device for Underground Scouting

Mars Landing-Site Specialist

STELLAR CHEMISTRY
Space tourism gaining momentum

NASA Veteran Alan Stern to Lead Florida Space Institute

Astrotech Subsidiary Awarded Task Order for NASA Mission

ASU in space: 7 current missions, more in the wings

STELLAR CHEMISTRY
Thousands of dreams to fly on Shenzhou 8

China's first space lab module in good condition

Takeoff For Tiangong

Snafu as China space launch set to US patriotic song

STELLAR CHEMISTRY
ISS orbit readjusted by 3 km

Expedition 30 to ISS could be launched on Dec 21

ISS could be used for satellite assembly until 2028

Ultrasound 2: Taking Space Imaging to the Next Level

STELLAR CHEMISTRY
SpaceX Completes Key Milestone to Fly Astronauts to International Space Station

ILS Proton Launches ViaSat-1 for ViaSat

Final checks for first Soyuz launch from Kourou

Soyuz is put through its paces for Thursday's launch

STELLAR CHEMISTRY
UH Astronomer Finds Planet in the Process of Forming

Nearby planet-forming disk holds water for thousands of oceans

Herschel discovers tip of cosmic iceberg around nearby young star

NASA's Spitzer Detects Comet Storm In Nearby Solar System

STELLAR CHEMISTRY
Space Waste Transporter: Going Where No Garbage Man has Gone Before

Netflix loses 810,000 US subscribers

German satellite re-enters Earth's atmosphere

Proposal would 'recycle' satellite parts




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. 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 Media Network on any Web page published or hosted by Space Media Network. Privacy Statement