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Stanford scientists detect sunspots before they emerge on surface

Emily

Editor, Senior Moderator
http://hmi.stanford.edu/Press/18Aug2011/
Detection of Emerging Sunspot Regions - 18 August 2011

The first clear detection of emerging sunspot regions prior to any indication of the region in magnetograms was published in Science on 19 August 2011.

Link to paper at http://www.sciencemag.org/content/333/6045/993.full

Sunspots, dark features in the solar photosphere with strong magnetic field, have been observed for more than 400 years. They are the most visible components of regions where solar flares and coronal mass ejections (CMEs) occur, and these eruptive events may cause power outages and interruptions of telecommunication and navigation services on the Earth. Although it is widely believed that sunspot regions are generated in the deep solar interior, the emergence of these regions through the convection zone to the photosphere has remained undetected until now.

Stanford scientists report today the detection of several sunspot regions in the deep interior of the Sun, 1-2 days before they appear on the solar disc. Their results show that sunspots are generated at least 60,000 km below the surface and emerge from this depth up to the surface with an average speed of 0.3-0.6 km/s. The detection of sunspots in the solar interior may provide useful warnings about upcoming surface magnetic activity which can be used to improve and extend the predictions of space weather forecast. The technique that they used to detect the sunspots is called time-distance helioseismology , and it is similar to a technique used by seismologists to image the Earth's interior.

The results are reported by Stathis Ilonidis, Junwei Zhao, and Alexander Kosovichev in the paper "Detection of Emerging Sunspot Regions in the Solar Interior" published in the August 19 issue of Science Magazine (vol. 333, pp. 993-996, 2011).

Much more information at the link.
 
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