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SOLAR SCIENCE
Science Nugget: SDO Helps Measure Magnetic Fields on the Sun's Surface
by Karen C. Fox for Goddard Space Flight Center
Greenbelt MD (SPX) Jan 19, 2012

The Helioseismic and Magnetic Imager (HMI) aboard the Solar Dynamics Observatory (SDO) maps the magnetic field on the sun's surface. Credit: NASA/SDO and the HMI science team.

A subset of data that helps map out the sun's magnetic fields was recently released from the Solar Dynamics Observatory (SDO).

Observations that measure the strength and direction of magnetic fields on the solar surface - known as vector magnetograms - play a crucial role in understanding how those fields change over time and trigger giant eruptions off the surface of the sun such as solar flares and coronal mass ejections (CMEs).

Collecting the information needed to make vector magnetograms is one of several tasks performed by SDO's Helioseismic and Magnetic Imager (HMI), an instrument led by a team at Stanford University.

HMI has been collecting data since May of 2010, providing scientific data on the strength of the sun's magnetic field and the sound waves moving around inside the Sun.

HMI relies on interpreting the way light is affected as it travels through the fields in order to measure them from afar. For example, a phenomenon known as the Zeeman effect splits light into different wavelengths based on the magnetic field strength and, in addition, light may be polarized based on the magnetic field direction.

HMI uses these observations to produce vector magnetograms. Producing vector magnetograms at HMI's high resolution, however, required developing new computer processing techniques to successfully interpret subtle details about the magnetic field.

In early December, the HMI team released their vector magnetograms for one area of the sun, named Active Region 11158, collected during February 12-16, 2011.

As a larger group of researchers examines the new data, the team can refine their computer processing algorithms if necessary and then release all the vector magnetic field data that HMI has collected.

Related Links
Solar Dynamics Observatory
Solar Science News at SpaceDaily




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Greenbelt, MD (SPX) Dec 09, 2011
Solar storms and associated Coronal Mass Ejections (CMEs) can significantly erode the lunar surface according to a new set of computer simulations by NASA scientists. In addition to removing a surprisingly large amount of material from the lunar surface, this could be a major method of atmospheric loss for planets like Mars that are unprotected by a global magnetic field. The research is b ... read more


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