Record-Breaking Radio Astronomy Project to Measure Sky with Extreme Precision

November 16, 2009 Record-Breaking Radio Astronomy Project to Measure Sky with Extreme Precision

Enlarge

Very Long Baseline Array. Credit: NRAO/AUI/NSF

(PhysOrg.com) -- Astronomers will tie together the largest collection of the world's radio telescopes ever assembled to work as a single observing tool in a project aimed at improving the precision of the reference frame scientists use to measure positions in the sky. The National Science Foundation's Very Long Baseline Array (VLBA) will be a key part of the project.

For 24 hours, starting Wednesday, November 18, and ending Thursday, November 19, 35 located on seven continents will observe 243 distant quasars. The quasars, galaxies with supermassive black holes at their cores, are profuse emitters of radio waves, and also are so distant that, despite their actual motions in space, they appear stationary as seen from Earth. This lack of apparent motion makes them ideal celestial landmarks for anchoring a grid system, similar to earthly latitude and longitude, used to mark the positions of celestial objects.

Data from all the radio telescopes will be combined to make them work together as a system capable of measuring celestial positions with extremely high precision. The technique used, called very long baseline (VLBI), has been used for decades for both astronomical and geodetic research. However, no previous position-measuring observation has used as many radio telescopes or observed as many objects in a single session. The previous record was a 23-telescope observation.

At a meeting in Brazil last August, the International Astronomical Union adopted a new reference frame for celestial positions that will be used starting on January 1. This new reference frame uses a set of 295 quasars to define positions, much like surveyor's benchmarks in a surburban subdivision. Because even with 35 radio telescopes around the world, there are some gaps in sky coverage, the upcoming observation will observe 243 of the 295.

By observing so many in a single observing session, problems of linking positions from one observing session to another can be avoided, the astronomers say. The result will be a much stronger, more precise, reference grid. Telescopes in Asia, Australia, Europe, North America, South America, Antarctica, and in the Pacific will participate.

Improving the celestial positional grid will allow astronomers better to pinpoint the locations and measure the motions of objects in the sky. As astronomers increasingly study objects using multiple telescopes observing at different wavelengths, such as visible light, radio, infrared, etc., the improved positional grid will allow more accurate overlaying of the different images.

The improved celestial reference frame also strengthens a terrestrial reference frame used for radio-telescope measurements that contribute to geophysical research. The precise geodetic measurements help geophysicists understand phenomena such as plate tectonics, earth tides, and processes that affect our planet's orientation in space.

The VLBA is a continent-wide radio telescope system with 10, 240-ton dish antennas ranging from Hawaii to the Virgin Islands. Operated from the National Radio Astronomy Observatory's Pete V. Domenici Science Operations Center in Socorro, New Mexico, the VLBA offers the greatest resolving power, or ability to see fine detail, of any telescope in astronomy.

The multi-telescope observation will be accompanied by public-outreach activities in celebration of the International Year of Astronomy. A public web page devoted to the observation will be hosted at Bordeaux Observatory, and some of the participating telescopes will have webcams available.

More information: http://www.nrao.edu/index.php/about/facilities/vlba

Provided by National Radio Astronomy Observatory (news : web)


   
Rate this story - 4.8 /5 (5 votes)


November 16, 2009 all stories

Comments: 0

4.8 /5 (5 votes)

  • hide
  • Related Stories




  • hide
  • Relevant PhysicsForums posts

  • Spreading Life in the Universe
    created 1hour ago
  • Force of Gravity in terms of Density
    created Feb 08, 2010
  • what is the relation between gravity and light?
    created Feb 08, 2010
  • Does the Thermoelectric effect apply in sun?
    created Feb 07, 2010
  • More from Physics Forums - General Astronomy

Other News

Climate 'Tipping Points' May Arrive Without Warning, Says Top Forecaster

Space & Earth / Environment

created 10 minutes ago | popularity not rated yet | comments 0 | with audio podcast

(PhysOrg.com) -- A new University of California, Davis, study by a top ecological forecaster says it is harder than experts thought to predict when sudden shifts in Earth's natural systems will occur -- a worrisome finding ...


URI researcher calls for global effort to monitor marine pollutants

Space & Earth / Environment

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

A University of Rhode Island researcher who studies chemical pollutants in the marine environment has called on colleagues around the world to establish a global monitoring network to verify that the chemicals banned by the ...


A new 3-D map of the interstellar gas within 300 parsecs from the sun

A new 3D map of the interstellar gas within 300 parsecs from the Sun

Space & Earth / Astronomy

created 3 hours ago | popularity 5 / 5 (3) | comments 0 | with audio podcast

(PhysOrg.com) -- Astronomy & Astrophysics is publishing new 3D maps of the interstellar gas in the local area around our Sun. A French-American team of astronomers presents new absorption measurements toward ...


Rho Ophiuchus cloud

Professor: We have a 'moral obligation' to seed universe with life

Space & Earth / Astronomy

created 11 hours ago | popularity 3.7 / 5 (19) | comments 32 | with audio podcast report

(PhysOrg.com) -- Eventually, the day will come when life on Earth ends. Whether that’s tomorrow or five billion years from now, whether by nuclear war, climate change, or the Sun burning up its fuel, the last ...


New international satellite observations help assess future earthquake risk in Haiti

New international satellite observations help assess future earthquake risk in Haiti

Space & Earth / Earth Sciences

created 3 hours ago | popularity not rated yet | comments 0

Virginia Key, Florida--Scientists at the University of Miami have analyzed images based on Synthetic Aperture Radar (SAR) observations taken before and just after Haiti's earthquake, on January 12. The images ...