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SOLAR SCIENCE
IRIS Spots Plasma Rain on Sun's Surface
by Staff Writers
Greenbelt MD (SPX) Aug 09, 2016


This material is plasma, a gas in which positively and negatively charged particles have separated, forming a superhot mix that follows paths guided by complex magnetic forces in the sun's atmosphere. Watch a video on the research here.

NASA's Interface Region Imaging Spectrograph, or IRIS, captured a mid-level solar flare: a sudden flash of bright light on the solar limb - the horizon of the sun - as seen at the beginning of this video. Solar flares are powerful explosions of radiation.

During flares, a large amount of magnetic energy is released, heating the sun's atmosphere and releasing energized particles out into space.

Observing flares such as this helps the IRIS mission study how solar material and energy move throughout the sun's lower atmosphere, so we can better understand what drives the constant changes we can see on our sun.

As the video continues, solar material cascades down to the solar surface in great loops, a flare-driven event called post-flare loops or coronal rain.

This material is plasma, a gas in which positively and negatively charged particles have separated, forming a superhot mix that follows paths guided by complex magnetic forces in the sun's atmosphere.

As the plasma falls down, it rapidly cools - from millions down to a few tens of thousands of kelvins. The corona is much hotter than the sun's surface; the details of how this happens is a mystery that scientists continue to puzzle out.

Bright pixels that appear at the end of the video aren't caused by the solar flare, but occur when high-energy particles bombard IRIS's charge-coupled device camera - an instrument used to detect photons.


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Related Links
Interface Region Imaging Spectrograph
Solar Science News at SpaceDaily






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SOLAR SCIENCE
Astronomers Gain New Insight into Magnetic Field of Sun and its Kin
Boston MA (SPX) Jul 28, 2016
Astronomers have used data from NASA's Chandra X-ray Observatory to make a discovery that may have profound implications for understanding how the magnetic field in the Sun and stars like it are generated. Researchers have discovered that four old red dwarf stars with masses less than half that of the Sun are emitting X-rays at a much lower rate than expected. X-ray emission is an excellen ... read more


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