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SOLAR SCIENCE
Aurora borealis could make New Year's Eve appearance
by Brooks Hays
Boulder, Colo. (UPI) Dec 30, 2015


disclaimer: image is for illustration purposes only

Earlier this week, NOAA's Space Weather Prediction Center reported an M1 solar flare and associated coronal mass ejection. The resulting geomagnetic storm hit Earth Wednesday morning.

The center's forecast, published Tuesday, predicted a stronger G3 storm to last through Wednesday and a lesser G1 storm to persist through Thursday. The storming may result in the appearance of an aurora.

If it lasts long enough and stays strong enough, that could mean a New Year's Eve light show for viewers at the right latitudes.

"It's certainly possible," Terry Onsager, a NOAA physicist, told SFGATE. "It depends entirely on the strength of the storm. If it turns out to be stronger than that, it could be seen."

Onsager says viewers in the Pacific Northwest may be in the best position to catch a glimpse of the New Year's Eve aurora.

Auroras are created by the collision of high-energy solar particles with Earth's electromagnetic field. The electric disturbance excites gas ions in the upper atmosphere, causing them to glow various colors. The magnetosphere is thinnest at the poles, allowing the high-energy particles to penetrate into the upper atmosphere more easily. This is why auroras are seen most frequently at extreme latitudes -- aurora borealis, or Northern Lights, in the north, and aurora australis in the south.


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Previous Report
SOLAR SCIENCE
Auroral mystery solved: Sudden bursts caused by swirling charged particles
Kyoto, Japan (SPX) Dec 24, 2015
Auroras are dimly present throughout the night in polar regions, but sometimes these lights explode in brightness. Now Japanese scientists have unlocked the mystery behind this spectacle, known as auroral breakup. For years, scientists have contemplated what triggers the formation of auroral substorms and the sudden bursts of brightness. Appearing in the Journal of Geophysical Research, th ... read more


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