Space Industry and Business News  
Integral Locates Origin Of High-Energy Emission From Crab Nebula

This image shows the direction of polarisation (alignement) of the high-energy radiation emitted by the Crab Nebula, as detected by ESA's Integral gamma-ray observatory. The shaded part represents the error in the determination of this direction. This direction is remarkably aligned with the inner jets of the Crab. On their turn, these are aligned with the rotation axis of the pulsar located at the centre of the system. The Crab Nebula image in the background was obtained by combining an optical image by NASA/ESA's Hubble Space Telescope and an X-ray image by NASA's Chandra X-ray observatory. Click here to listen to the audio file from Crab. Credits: NASA/CXC/ASU/J. Hester et al.(for the Chandra image); NASA/HST/ASU/J. Hester et al. (for the Hubble image)
by Staff Writers
Paris, France (ESA) Sep 01, 2008
Thanks to data from ESA's Integral gamma-ray observatory, scientists have been able to locate where particles in the vicinity of the rotating neutron-star in the Crab Nebula are accelerated to immense energies.

The discovery, resulting from more than 600 individual observations of the nebula, put in place another piece of the puzzle in understanding how neutron stars work.

Rotating neutron-stars, or pulsars, are known to accelerate particles to enormous energies, typically one hundred times more than the most powerful accelerators on Earth, but scientists are still uncertain exactly how these systems work and where the particles are accelerated.

A step forward in this understanding is now accomplished thanks to a team of researchers from the UK and Italy, led by Professor Tony Dean of the University of Southampton, who studied high-energy polarised light emitted by the Crab Nebula - one of the most dramatic sights in deep space.

The Crab Nebula is the result of a supernova explosion which was seen from Earth on 4 July 1054. The explosion left behind a pulsar with a nebula of radiating particles around it.

The pulsar contains the mass of the Sun squeezed into a volume of about 10 km radius, rotating very fast - about 30 times a second - thereby generating very powerful magnetic fields and accelerating particles. A highly collimated jet, aligned with the spin axis of the pulsar and a bright radiating 'donut' structure (or torus) around the pulsar itself, are also seen.

So, the Crab is known to accelerate electrons - and possibly other particles - to extremely high speed, and so produces high energy radiation. But where exactly are these particles accelerated?

Looking into the heart of the pulsar with Integral's spectrometer (SPI), the researchers made a detailed study to assess the polarization - or the alignment - of the waves of high-energy radiation originating from the Crab.

They saw that this polarised radiation is highly aligned with the rotation axis of the pulsar. So they concluded that a significant portion of the electrons generating the high-energy radiation must originate from a highly-organised structure located very close to the pulsar, very likely directly from the jets themselves. The discovery allows the researchers to discard other theories that locate the origin of this radiation further away from the pulsar.

Professor Tony Dean of the University's School of Physics and Astronomy commented that the discovery of such alignment - also matching with the polarisation observed in the visible band - is truly remarkable. "The findings have clear implications on many aspects of high energy accelerators such as the Crab," he added.

"The detection of polarised radiation in space is very complicated and rare, as it requires dedicated instrumentation and an in-depth analysis of very complex data", said Chris Winkler, Integral Project Scientist at ESA. "Integral's ability to detect polarised gamma-radiation and, as a consequence, to obtain important results like this one, confirms it once more as a world-class observatory."

Related Links
Stellar Chemistry, The Universe And All Within It



Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News


UCI Scientists Discover Minimum Mass For Galaxies
Irvine CA (SPX) Aug 28, 2008
By analyzing light from small, faint galaxies that orbit the Milky Way, UC Irvine scientists believe they have discovered the minimum mass for galaxies in the universe - 10 million times the mass of the sun.







  • Carnegie Mellon System Thwarts Internet Eavesdropping
  • Tiny nation of Niue gets laptop for every child
  • 'Phoney' queues used to spur Polish iPhone launch
  • Yahoo mixes old and new in Internet-age news service

  • Arianespace To Launch Koreasat 6
  • Inmarsat Selects ILS Proton To Launch S-Band Satellite For Europe
  • Forecast International Projects 50 Billion Dollar ELV Market
  • Successful Launch For Third Inmarsat-4 Satellite

  • Chinese airlines fly into headwinds in Olympic year
  • The M2-F1 - An Aircraft Without Wings
  • China's Tianjin building runway for Airbus test flights: report
  • NASA evaluates new wing sensor

  • Satellite's Data Collection Will Support Warfighter
  • Boeing Awarded E-6B Upgrade Contract
  • Defense Support Program Satellite Decommissioned
  • Raytheon Bids For USAF Command And Control Contract

  • Eyes turn to dawn of 'visual computing'
  • NPL To Create Encyclopedia For Space Nanomaterials
  • Key Advance Toward Micro-Spacecraft
  • MIT's Lincoln Lab Upgrades Sputnik-Era Antenna

  • Orbital Appoints Frank Culbertson And Mark Pieczynski To Management
  • Chris Smith Named Director Of Cerro Tololo Inter-American Observatory
  • AsiaSat Appoints New General Manager China
  • NASA names aeronautics administrator

  • Arctic Ice On The Verge Of Another All-Time Low
  • Changing The World, One Student At A Time
  • GOCE To Look At The Earth Surface And Core
  • Tropical Storm Fay's Center Now Moving Inland

  • Rockford Map Publishers Selects TerraGo To Enhance Plat Books
  • u-blox GPS Technology To Power Microsoft MapPoint 2009 USB Stick
  • XATA Adds Enhanced Mapping Capabilities To Fleet Management Solution
  • Airbiquity Announces Connected Services Platform For PNDs

  • The content herein, unless otherwise known to be public domain, are Copyright Space.TV Corporation. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. 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.TV Corp on any Web page published or hosted by Space.TV Corp. Privacy Statement